Showing posts with label robots. Show all posts
Showing posts with label robots. Show all posts

Friday, October 13, 2023

When robots are laughing and crying.

When robots are laughing and crying. 


Does the AI have feelings? 


Does the AI have feelings? Or can it be emphatic? The fact is this program code that controls the AI determines if it can give empathic reactions. The problem with the human nervous system is that we don't make a difference in the writing of empathic letters or telling empathic stories human or AI. Our nervous system is not adapted to AI yet. And that's why we cannot separate text written by AI from text that made by humans. 


What does somebody make with AI that can emulate feelings? The fact is that the cyborgs are useful tools for infiltration operations. The human-size robots can have WLAN/6G connections with the central computers. Or they can form a neural network that shares information between all group members. The robots can also act as walking neural network-based supercomputers. That can make complicated solutions. 

In those networks, each member shares information and their data-handling capacity all over the network, and robots can search the internet using two ways. The robot can use traditional computers and read text from the screens. Or it can connect itself to the net by using wireless communication tools. 

When the robot communicates, it must only have access to an AI-based chatbot. The robot can use that thing as a remote. In some interfaces is a speech-to-text application that transfers spoken language to AI-based chatbots. The problem with robot groups is that when one individual robot gets some data, that data will escalate all over the group. 




 The robot's communication is an AI-based chatbot. That connected with the physical robot. 


Artificial intelligence makes many things. But do they have feelings? The fact is that the AI can imitate people. It can search data from the network, like how people react to disappointments. Then the AI can search the allowed reactions to things that people should feel. The database that AI has determines its reaction. The database can determine categories where certain phrases belong, and then it can react to those things using socially accepted words. 

The AI can see if a person is crying, and then it can ask what the problem is. And if AI hears that somebody has a baby, it might say congratulations. The AI is not human. Humans determine all their reactions. So that thing makes the AI a little bit like a psychopath. If some reaction is programmed in it, that thing means the AI makes that thing. 

The AI will have no conscience like humans. Only rules. That this kind of system follows is coded in its program code. And that's why the military is interested in this kind of system. In some visions, the human-looking, explosive in its body walks into the command center and detonates itself. This kind of system is the most dangerous tool that humans ever created.

 It means we think that anti-crime AI tries to slip into the criminal organization. It can tell fairy tales about dead brothers. We know that this things are difficult for most of us, but the AI has no feelings. The AI always makes what its master users want. And that is the thing, that makes it dangerous. 

The AI that can emulate feelings can ask for money from people. But it also can slip malicious software to companies. And that thing makes this kind of application a very dangerous tool if they are in the wrong hands. 

But criminals also can benefit the AI that has feelings. The AI can send Emails to people. And play somebody who is in trouble. Then the AI can ask for money from the victims. But that is one of the smallest problems with this kind of thing. The AI can send computer viruses or so-called malicious software in that message. 

https://scitechdaily.com/ai-empathy-is-it-technology-or-just-our-perceptions/

Saturday, December 3, 2022

Biomechanic prostheses and brain control microchips are the new combination.



When we think about biomechanic prostheses there are two ways to control them. The easier way is to make a system that uses BlueTooth as the communication tool. In that case, the signals that are coming from brain-controlled BlueTooth devices normally remote control the prosthesis. And then another way to make the prosthesis is that the biomechanic system uses the impulses that come from the nerves of that wounded hand or leg. 



There are two main types of biomechanic or bionic prostheses. 


*The prosthesis is the external machine that connects to the user's body. The system can be a little bit like the HULC (The Human Universal Load Carrier) exoskeleton. And the Neuralink-type microchips can also control that kind of system. 


*Another version of that kind of system is the system that gives simulated neural impulses to the muscles. These systems are BCI-controlled electrodes that can give muscular stimulation from the outside. Those electrodes can be used by BlueTooth connection. 


The BlueTooth-based microelectronic systems can control things like mobile telephones or computers. And only the imagination is limited in those systems. The Bluetooth-based microchips can use to control jet fighters or computers that allow them to control things like drone swarms, and robots. Or any other devices through the internet. That kind of system can control things like robot assistants that are acting as external bodies for those operators. 

The communication between the device and the user can make by using external or synthetic reality. Or the system can use cortex stimulation that turns the external body into part of the nervous system. 




The "Neuralink" will revolutionize biomechanical prostheses. But it can also make many other things that have been impossible before into reality. The "Neuralink" is a surgically implanted microchip. That is Elon Musk-owned company. This kind of microchip can make it possible to control the biomechanic prosthesis. But the user of that kind of system can use things like mobile telephones by using this kind of microchip. The brain-implanted microchip can communicate with other devices by using BlueTooth communication. 

So "Neuralink" is one version of the BCI (BRain-Computer Interfaces). There is no limit to using that kind of microchip. The ability to connect things like computers and mobile telephones makes it possible. The Neuralink-system's users can connect their brains to the Internet whenever they want. 


https://bleex.me.berkeley.edu/project/hulc/


https://www.news.com.au/technology/innovation/inventions/elon-musk-says-neuralink-is-ready-for-use-in-humans/news-story/27846d5228410829acc356f66dbda3a7


https://scitechdaily.com/a-new-dawn-for-prosthetics-engineers-light-the-way-to-nerve-operated-prosthetics-of-the-future/


https://designandinnovationtales.blogspot.com/

Wednesday, November 23, 2022

The QRIP or Quick Reaction Instrumentation Package can make the F-35 even more effective.


Lockheed Martin F-35 "Lightning II"
The football-sized device called  Quick Reaction Instrumentation Package or QRIP can store data from F-35. And then, that system can use for the R&D process at both technical and tactical levels. The AI can analyze this data and scale adjustments that the AI needs to make the system, even more, better across the F-35 fleet. And that data can use to increase the effectiveness of cooperation with other units like the navy and ground forces. 

That kind of instrument can put also in the "loyal wingman" or some other "trap drone" whose mission is to record the data about enemy reactions. The purpose of trap drones is to make the enemy affect the incoming attacks and record things like radar signals and enemy communication. 

The trap drone sends that data to the F-35 and then the AI can adjust the jammer systems to the most effective level. Things like intelligent radar systems that are giving counter-waves can improve the survivability and mission success of those attack aircraft. The QRIP systems can also send information about the most effective weapon systems. And also if something goes wrong and the missile or ammunition hits to F-35 the QRIP can share data on what went wrong. And other F-35s can adjust their trajectories and altitudes. 


                                                            Boeing MQ-28 "Ghost Bat"

AI can make many things better than humans. 


When we are thinking about AI and things like warfare AI can analyze very fast what made wrong. And then it can create new trajectories and closing profiles. But the thing that this kind of system requires is that humans must dare to take orders from the AI. AI is created for humans. And humans should be over AI. But for making successful operations. The system requires that humans follow orders that are from the AI. And that thing is difficult for somebody. 

When we are thinking how effective thing AI can be. We must put ourselves in the position where we are following the orders of the AI. There is the possibility that chess players can win games by using AI. In that case, the AI gives instructions to the player on what is the next move. In that case, the AI can follow the game by using a camera and then say the next move to the player. 

The AI can communicate with the player by using wireless headphones or an LRAD (targeted sound) system. But that requires that people and AI will turn their roles upside down. The human must take orders from AI. And that is difficult to understand. But AI can make new tactics and fix the errors that humans are making. If something goes wrong the AI requires all information about that thing. And if the AI can get all possible information it can fix the error immediately. 


https://www.defensenews.com/air/2022/11/18/football-sized-device-could-transform-how-air-force-collects-f-35-data/


https://scitechdaily.com/artificial-intelligence-agent-is-a-winner-at-the-game-of-diplomacy/amp/

Images: 


https://en.wikipedia.org/wiki/Lockheed_Martin_F-35_Lightning_II

https://en.wikipedia.org/wiki/Boeing_MQ-28_Ghost_Bat


https://designandinnovationtales.blogspot.com/

Saturday, November 19, 2022

The brain-controlled robots are not science fiction anymore.



The idea of the BCI (Brain-Computer Interface) is taken from the biomechanic prosthesis. That gives people the ability to control prostheses by using neural signals. The modern versions of that prosthesis are using WLAN or Bluetooth communication. 

And that means the electrodes of those advanced systems are under the skin. There are no external wounds in that kind of system. And the transmitter gets its electricity from similar batteries that are used in pacemakers. Or the more futuristic systems can use neuro-electricity as an energy source. 

Paralyzed people can control their wheelchairs by using the BCI (Brain-Computer Interface). The key in the brainwave control robots is simple. The user of the robots uses those systems through a computer. 

BMI (Brain-Machine Interface) requires the BCI to operate. And teaching the BCI can happen by simulation. The key for those systems is that the computer must recognize the EEG that the brain sends at certain moments. 

And, the simulations can teach the BCI to connect the BCI to a certain action. The requirement for the perfect BCI system is that the computers know what kind of brain waves the brain sends when it wants to do something. 

Those BCI systems development is not as difficult as people normally think. The developers can use simulators as an example, a driving simulator where the person drives by using a virtual device. The computer will record those brainwaves while the person uses this machine. 



There are three stages in that process. 


*The driver will control the virtual device by using regular controls. And the system will record the EEG in those moments.  The system connects that EEG to the movements of the control systems. 


When as an example driver turns the wheel or presses the gas pedal the system connects that action with the EEG. And then that record can use for making the BCI system. 


*In the next stage the controller will not use physical control systems. That means the controller can make movements but the system compiles the EEG to the records that are made in the first moment. 


*And in the last stage, that data can connect to the other vehicles. The BCI might require that person moves hands or feet. 


But the goal of that kind of development process is that the user of that kind of system requires only a helmet where the electrodes are. The system can interact with users by using HUD glasses. 

Or in the most advanced visions, the system interacts with brains by stimulating the cerebral cortex or brain core. That kind of simulation makes the robot the external body of the user. The user cannot make difference between the senses. That is coming from robots and the user's senses. 

But how to eliminate the need to move hands or feet if the person uses BCI to control things like jet fighters? In some visions, the person just is paralyzed by using chemicals. Or who cares how the person who is remote-controlling some robot moves their hands or feet? 


https://www.psychologytoday.com/us/basics/brain-computer-interface


https://scitechdaily.com/not-science-fiction-paralyzed-people-can-navigate-using-mind-controlled-wheelchairs/


https://en.wikipedia.org/wiki/Brain%E2%80%93computer_interface


https://designandinnovationtales.blogspot.com/

Sunday, August 7, 2022

In the future, robots can call the emergency center when they need computer assistance, like new programs.




Even if spontaneously learning a computer or algorithm is hard to make it's possible, that in the central computer is the library of the computer codes made for different situations. The man-size robots have limited computer capacity. So for making databases and computer code lighter the robot can "forget" the unnecessary code. 

That means the computer deletes the databases after they are used. And then the robot can load the new algorithms into its memory. The ability to change code in the computer makes algorithms less complicated. And robots are more flexible when they can change the components of their program. 

There is an image, where the robot is using the computer. The technology where the programmer can program robots by sending the program code from the computer screens already exists. The system uses a camera or robot's eyes for reading programming code to the computer's memory. When artificial intelligence detects programming code it resends it to a programming tool. 

The new fast-learning algorithms are fascinating tools. A similar algorithm that is used to translate texts from digital images, can be used for programming robots and computers. There is the possibility that the system reads computer program code to a programming tool similar way texts are read to the translation program. So maybe in the future the robot can sit next to the human worker and read the code lines from the computer screen. 

Human size and human-form robots would be the most flexible tools than anything before. The human-looking robots can operate by using the same tools as humans. And the human-looking robot can turn any aircraft or tank in the world into a drone. But the problem is that those systems still have limited computing capacity. The complicated algorithms make it possible that the system can make many things. But what if the robot can ask for help by using regular mobile telephones or interacting with security cameras? 

In the last case, the robot can send a message to the surveillance camera, and then the system can send new instructions to it from the information screen. And in the first case, the robot can simply use the cell phone for asking new computer codes in the form of text messages. The fact is that the new programming code can send to the robot even in the form of a paper letter if the system uses the camera-based reading systems. A similar system makes it possible. That the translation application can read texts from digital images. 

And the computers can send programming code also to programming tools. There is also possible to create a translation program that translates the normally written orders into the form of programming languages. The system can also use speech through the speech-to-text application. And when the operator orders the robot to walk this message will be translated into the regular programming language. 

These kinds of abilities are making robots more powerful and flexible. The ability to send code lines to the robot in the form of text messages makes it possible that robots can operate almost without trouble in areas where internet connections are bad. 

There is the possibility that the robots of tomorrow can use similar mobile applications to a normal person. And if the robot will get in trouble it can send the text message to the central computer that sends the program code to it in the text message. This kind of system makes it possible that robots can interact with controlling systems in many ways. When robots are in trouble they can simply send a message about the situation in the form of laser rays to surveillance cameras. 

And then the local information screen can flash the needed program code to the robot. Those flashes can maintain less than half a second. And then the robot will resend the code to the system for making sure that is the right thing. Maybe that emergency center for robots is real in the world of the future. 

Making this kind of system effective requires the central computer must, of course, to know the mission. So when the master of the robot is giving orders about what the robot should do that person must just make a phone call to the computer center and say what the robot must do. 


Image:) https://www.dotmagazine.online/issues/ai-intelligence-in-the-digital-age/ai-changing-the-game-for-good/ai-for-network-infrastructure


https://artificialintelligenceandindividuals.blogspot.com/

Thursday, March 3, 2022

The electric cells of electric eel can for creating electricity for futuristic robots.




The biological batteries are suitable for power sources for androids. 


Have you seen the movie "Aliens"?There is a human-looking android robot called "Bishop". That kind of robot can connect to the computers of the spacecraft. Or the computer center if we want to be less futuristic. That kind of man-looking robot can be the "contact person" between computers and humans. The "Bishop-unit" is similar to "Sophie". The AI-driven robot. That is interacting between supercomputers through the internet. 

That means the computers are interacting through those "Bishop-units". And that thing means that quantum computers can communicate straight with humans by using those undercover models. Those man-looking robots could also make repairments for the computers. 

That kind of robot can use a biological power source. Like the electric cells of electric eel for making their electricity. In that case. The system will eat the food to the artificial stomach. There are bacteria and the ability to transfer the food to nutrients for those cells that are creating power for the robot. 

In some "Daedalus" type theoretical plans the craft will send to another star. With those "Bishop-units". In some visions, the futuristic interstellar spacecraft will use regular binary computers when it leaves the solar system. And in that journey, the man-looking robots will make quantum computers. 

The idea is that the binary system is easier to control than a quantum computer. The quantum computer starts to run the AI when the craft is enough far away. And at the target, those "Bishop-units" would act as babysitters for the crew that is traveling in the form of hyper-cooled embryos that are cooled to zero kelvin degrees. 



The number of those electric cells determines the power of electricity that they can deliver. 


Biological batteries are one of the most exciting versions of the use of bioelectricity. There is a fish called an electric eel, that uses electric shocks as the defense and hunting. The cells that are creating over 600 volts of electricity. And that means those cells can use as biological batteries for nanomachines. But those cells they can use to create electricity also for the microchips and electric engines. 

Cloned electric cells of electric eel can use in any kind of electric device. And biotechnology allows the creation of large masses of those cells. The thing is that number of those cells determines how powerful electricity the biological power source can create. If the electric cells of an electric eel, are connected to things like computers or robots. The only thing that the system needs is nutrients. Of course, the power product of those cells must stabilize. 

Those cells that are creating electricity for that fish can use for parallel or serial connection. The system can use cloned electric cells and the electricity of those cells can store in a capacitor or battery. That means, even large-size systems can use by using electricity. That is created by biological batteries or cells that are creating electricity. 

In the most interesting and futuristic models, the electric cells can use to create electricity for large-size robots. The cells would be in the chambers. And the robot needs nutrients for creating electricity for the robots and their computers. That thing makes it possible to create a human-looking robot that eats normal food. 

There is one thing where the cells that are creating electricity can also use. That is SciFi-style spacecraft where the systems are getting electricity from the electric cells. The electric cells can give electricity for the ion engines as well as computers. The requirement is that the number of cells is high enough. 


https://en.wikipedia.org/wiki/Electric_eel


https://en.wikipedia.org/wiki/Project_Daedalus


https://likeinterstellartravelingandfuturism.blogspot.com/

Sunday, January 23, 2022

Maybe the human brains are the key to making a more energy-friendly and powerful quantum computer.



The researchers of Riken are testing the free-energy-based theories. For creating models for self-learning neural networks. There is a link to that article below this text. The energy-effective quantum computers are the key to self-operating robots. 

But when we want to make an effective self-learning quantum network. We can connect the energy to data that is driven in the system. And another thing that makes those neural networks effective is that every single part of the intelligent neural network would be intelligent. 

They can share the energy overdose. To other parts of the neural network. And that decreases the need to use electricity. That thing can make those quantum computers more energy-friendly. This makes it possible to make smaller quantum computers. 

In neural networks is many small components that are acting as an entirety. And the most well-known neural system is the human brain. One neuron might not very impressive. But 200 billion neurons are turning that neural system into the most powerful quantum computer in the world. 


https://scitechdaily.com/the-free-energy-principle-explains-the-brain-optimizing-neural-networks-for-efficiency/


Image: https://scitechdaily.com/the-free-energy-principle-explains-the-brain-optimizing-neural-networks-for-efficiency/


The principle of AI is that it must do only things made by programmers in purpose. 


The principle of the developers of the AI is that they don't want to make any kind of rebellious robots. Artificial intelligence must make things that programmers want without any nasty surprises. 

The AI must not have the power and abilities that are possible to make. Those systems must have only the wanted abilities. Same way nuclear weapons must not give the most powerful power that they can create. The nuclear weapon must give the wanted and needed power. The thing that makes AI's safe is that they can operate in limited areas. But self-learning platforms are the thing. That can make those systems the same way multipurpose. And able to operate the same way in the large sector as humans. 

This thing can move to the world of AI. The platforms of AI must do only things that are wanted. But if there is a possibility to make robots that can visit shops for people and paint their houses. That thing can seem very nice. But those robots must have limits. There must be a system that allows robots to resist and make a report if somebody orders it to make something illegal. 


The robot is not the same as the AI.


The AI is a computer program or algorithm that can do many things. The robot is that platform that is making physical operations under the control of the AI. So the robot body itself would not be independent. That physical system can cooperate with supercomputers by using the WLAN systems. 

When developers are creating the AI. They are creating systems that can make things what their controller wants. They are making the segment of which kinds of things the AI must do. There is no AI that can do all possible things. 

Modular AI can do many things. In modular AI many separated algorithms can operate independently. There might be different algorithms that are reserved for the military, law enforcement, and civil work. So the same robot body can make all missions that humans can. And the only limit is what skill segment it can use. 

The fact is that modular AI is making robots operate in many areas. One of the examples is the robot servant. There are certain rooms in the house. And there is a series of actions or certain modules for every room. When the robot is moving to the living room it downloads the module. In that module are the actions that are meant for the living room. 

When the robot moves to the kitchen there might be an electronic calendar. When the robot's owner stores some work in the calendar. That mission is transferred to the AI that controls the robot body. If the owner of the robots will give the order to make the certain food. 

At the first, the robot or controlling AI can search for the receipt of the food from the Internet. The robot would see the freezer if there is the needed raw material. If that raw material is not stored. That robot visits the shop. Putting the required algorithms in modules that denies that the AI's code will not grow too large. 


https://thoughtandmachines.blogspot.com/

Friday, January 7, 2022

Hacking the brains is needed for advanced robotics.

 

 Hacking the brains is needed for advanced robotics. 



Hacking the brains and creating synthetic memories is one of the biggest conspiracy theories in the world. The thing is that these kinds of things are under research and the purpose of that kind of technology, where brains are hacked or cracked is to fix brain damages. Hacking the brains is theoretically very simple. The researchers must only record the EEG from the brains and then connect that EEG signal to certain images. So this thing makes it possible to read dreams and affect them. 

The person would see images about things like animals or humans, and then the EEG will record while that process. Then the person looks at a longer film. And then the EEG that is recorded during that process. Will compile with the EEG records that are taken while the person looks at images. The problem is only if those EEG curves are unique. But if the EEG curves are similar there is the possibility to download things like dreams to the screen of computers. 

The thing is that hacking brains are giving the ultimate possibilities in many areas from science to the military. There is the possibility to educate people simply by inputting data into their brains. And the false memories are making it possible to give combat experience to soldiers before they even go to combat. But these kinds of systems are extremely dangerous in the wrong hands. 

There are visions of the external robot body. Brain hacking gives those systems the ability to communicate with the nervous system without borders. This kind of system requires brain hacking for working perfectly. 

Hacking the brain is needed for developing the prosthesis. That is reacting to nervous signals. The system must "only connect" certain EEG curves to certain movements. The same system can use to control robots and especially human-looking robots by using brain waves. The reason, why the human-shaped robot is easy to control by using the EEG. 

Is that the manipulators and the senses have the match in brains and robot body.  So that thing makes it possible to make a robot emulate the movements that the operator makes. If the system uses the signals taken from the brain areas. Which controls the person's movements the controlling that kind of system requires that person is moving. 

So the system that controls the EEG signal requires the brain tracks that are activating the neurons that are moving muscles. The problem with that kind of external body is that the person who is using them must move while using that robot. The system uses the signals that are taken from the movement centers. So making that kind of system using the system requires the data that activates the neurons that are moving muscles. 


The series of neuron activation while the person will move hands

1) Will to move hands will be sent 

X) To the transmitter-neuron sends that data to 

2) Neuron what is controlling muscles


So the series of actions that this kind of system needs to move robots. While a person sits on the chair is this:


1) Will to move hand or leg will be sent 

X)  to transmitter neurons

2) The robot control level


The problem is how to aim the signals of the transmitter neurons to the robot. That means that those signals must reroute to the robot without those signals can activate the neuron that controls muscles. But if the operator can move all the time. That thing is not the problem. 

Of course, muscles can be disabled, by using some medicals, but that thing is dangerous. And that means the system that controls the external bodies by using the EEG is a challenging but fascinating mission. 

The BCI (Brain-Computer Interfaces) are the key to BMI (Brain-Machine Interfaces). Those systems are control robots by using EEG. Normally the BCI is connected to the speech center in the human brain. And that thing transforms EEG to speech. The same system can use to control robots. The same signals that control the speech synthesizer can route to control robots. So when the operator thinks "robot move forward" the robot moves forward. 

The problem is. How the AI knows which commands are meant for the robot? The solution is taken from dog training. When trainers give commands to dogs they must separate the commands from common noise. 

Certain gestures or certain words predict those commands The purpose of those things is to tell the dog that commands are meant to it. The same problem is with robots. Robots must separate the commands that are given in purpose from other words. 

Before every command is a confirmation word. And the purpose of that prediction word is to route the command to the robot. 

Every order that is given to the robot is forwards the control word. That the AI recognizes that commands are meant for the robot. The same system can use voice commands. And the BCI is only the enhanced version of this system. 

The operator can use virtual reality sets and headphones to connect themselves to the robot. But there is the possibility to connect the robot to the body by using the neural connection that allows controlling robots straight with the EEG. 


https://futurism.com/could-we-hack-our-brains-to-gain-new-senses


https://scitechdaily.com/cracking-the-neural-code-to-the-brain-how-do-we-provide-meaning-to-our-environment/


Image: https://scitechdaily.com/cracking-the-neural-code-to-the-brain-how-do-we-provide-meaning-to-our-environment/


Sunday, January 2, 2022

New robots bring new tricks.

  

 New robots bring new tricks.




Robots that emulate fish are more effective than robots that are using propellers. If the robot has similar fins and tails with fish. It won't get stuck to the algae and water vegetables so easily as propellers using robots. The problem with small-size robots is that they have limited power sources. The thing is that also larger nuclear-powered submarines can have fins and structures like pike fish that kind of submarine might have stealth drive along with propellers. 

Structures that are used and tested in miniature submarines. Can turn to use in larger-scale submarines. There is also tested the cuttlefish-looking submarine construction. Those kinds of systems can use water jets for driving fast underwater. 

Then the robot can use those fins in the area where the system needs to operate accurately. Those robots can be of various sizes. And they can use to recover the material from the bottom of the oceans by using manipulator's arms. 




Those little bit spider-looking machines can use to return things like nuclear reactors and secretive things like dropped nuclear bombs in secretive missions. As well as they can use to return chemical waste or something like that. 

The flying man-shaped robots can also be modern technology. The same technology that is created for those systems can also use to lift people. The man-looking flying robots can someday research planets like Venus and Saturn moon Titan. But they can also drop to research the jungles in Papua-New Guinea. 

New technology like large-size quadcopters can use to lift people from the ground. And sometimes is tested the backpack, that has a helicopter structure. The tail rotor would be at the end of the telescope tail. And the main rotor would be in the middle of the backpack. Those kinds of systems have problems with power supply. 




So the quadcopters are easier to control. And they can be connected to the wireless game control sticks. Those systems are almost safe. Because of the battery is ended. That robot can have autorotation mode. The autorotation guarantees that the system can return to the ground safely. 

The quadcopters that are lifting humans can use to land the special operations teams to the ground. And then fly back to VTOL aircraft. The same quadcopters can also rise window cleaners to the roof of buildings. But in the same way, things like burglars can use quadcopters to lift them and their equipment to the roofs of their targets. The fact is that this kind of technology is open source. Everybody can buy a quadcopter from shops. And then the person needs only the employment skills to enlarge that system. 

Italian "iron man robot". (https://www.engadget.com/)

https://interestingengineering.com/cuttlefish-like-robots-are-far-more-efficient-than-propeller-powered-machines


Wednesday, November 24, 2021

When humans are falling, robots are rising.

 When humans are falling, robots are rising.



The robot makers are saying that robots will take jobs from some people. And of course, that thing causes worries. But otherwise, we should think about what kind of jobs robots are taking from us? Are they jobs that are wanted or respected? 

Or would you do those jobs? The thing is that robots are a complicated thing in the environment and business infrastructure. And the fact is that robots are effective operators that can grow productivity to the highest possible levels.


Robots can operate without breaks, and they don't need salaries. And if the company uses only robots for a working process. That means it can make products with the lowest possible price. 


Because robots are not needed salaries or practice they can operate near the delivery area. And the thing is that the robot can make so many stages in work. That is stored in its memory. And those modules can be changed when the company wants. 

So that kind of company can minimize the salary and transport costs. That means it can make products with lower prices and that is a good weapon in competition. And even if the products that robots made, are not sold. The company can turn to make a new product right away. Or if there is a cut in production those robots can take into use immediately when the order is taken. The robots would not make strikes. And the only thing that is against them is that they are taking jobs from people. 


 But the problem is, what the people whose jobs the robots are taking would do? 


The problem is that those people would just get their salary in the form of social aid. But the low salaries in the sectors. Where robots are planned to use are causing that the people who are working in those works are unhappy. In this text, I write about normal working robots, which mission is to replace human workers in boring and low-paid jobs. The advancing robotics needs infrastructure that supports them. 

The infrastructure is, of course, the recharge points and wheel-change service. But the environment is also the thing that is between our ears. Things like attitudes are the things that are also belonging to infrastructure. The attitudes are the things that are making people select the politicians. And politicians are making the laws that are controlling the development of the systems. 

When Elon Musk wants to make more robots and use them for work, that is reserved for migrant workers the idea behind that thought is that there is a couple of things that people should understand. The thing is that when we are building more and more apartment buildings we need more and more cleaners. So where we can take those people? Do the native citizens willing to apply for those jobs? 

Or what kind of people is willing to apply for those jobs anyway? If the natives would not want to do them, there is possible to bring foreign workers to make those works. And when the contract is gone the migrant workers are going home. Then we might ask one very big question: what kind of people come from a foreign country to clean some apartment buildings? 


Or would you tell your children that their place in society is to work as a cleaner because we don't want robots or migrant workers?


Maybe some people must take that kind of job. But what is the price of the force? Do we want employees who are a couple of months in work and then they are gone? When a new applicant is hired, there it takes time to introduce and learn the jobs. And then after four months, the next worker is coming in. Is the work well-done if it is made by some person who has social problems? Or would the people who live in the house feel safe if their cleaners are full of tattoos?

Is the person happy if that worker knows that after a couple of months will wait for the new work application? There is the possibility that in those places was not even promised nothing more than 2-3 months.  But is this the thing that we want? Do we want there a large group of outcast people? 

https://thoughtandmachines.blogspot.com/

Saturday, November 30, 2019

The hybridization of the living organism and machine.




The hybridization of the living organism and machine.

Prologue: the abductions

The abductions or UFO-kidnapping cases have caused some people, who are thinking about this kind of thing the reason might be the genetic experiment. But there might be some other thing, what the abductors would want from that person, who has been taken, or who have been visited. And that thing might be the memories, what those hypothetical abductors would use to create their tactics and equipment.

In this scenario, the UFO would be the full hybridization of the living organism and machine. That means that the abductor itself might be some kind of drone, and the controller, what might be the creature, what is living in zero-gravity conditions would control that drone. But exactly we don't know what UFO:s would be, and the abductions remain a mystery.

The thing is that the UFO might use the suction for pulling the targeted person into it, and that means that the famous "tractor ray" might be only the thing, that works like a giant vacuum cleaner. That system might use light to target that suction or the tube, and also cover the form of the thing, what is called UFO. In this text, UFO means simply the term UFO means only the aerial vehicle, which cannot be recognized.

What if the data, what is meant to teach colony would go to the hands of primitive humanoids?

Sometimes some futurologists have created an idea, that it is possible to use holograms to create intelligent lifeforms. In this case, the supercomputers would use holograms or messages, which are projected to the clouds, and then teach some species. And this thing has brought the more interesting idea, what might be someday true.

The thing is that the supercomputers could create intelligent lifeforms by using the massive holograms, which are shown to the bacteria or some other species, what will imitate the forms, what they feel. In this case, the probe, what would send to another solar system would teach the hypothetical aliens, how to become the civilization, and who knows, maybe we have been that species somewhere in the history.

There is one, a very silly hypothesis that some humanoid probe might drop to the Earth in history. In this case, the probe contained information, what was meant for the alien colony. The idea of this kind of system was created from the hypothesis, that maybe we would someday send the fetuses to another solar system, and when those colonialists would grow, the system will be teaching them by using the holograms, and there is theory what might look silly, that in somewhere at history, the ancient humans found that kind of information storage, where was the advises how to make walls and other kinds of things. And that information would begin the civilization on Earth. But this is an only theory without proving.

The hybridization with machines

In this case, this system would create the form of human brains by using the bioprinters, what would use the cells of the hive for creating a precise right form, and then the RNA molecule, which controls the advantage of the neurons would inject to those cells. And that molecule would turn them to neurons, what can feed on the nutrient, what comes from the platform. When we are thinking about the hybridization of the living habitat and machine, we must realize that if the spacecraft would carry only brains, that would eliminate the social problems.

The suitable RNA molecules can be stored in digital form, which means that the system would create the molecule by using nanotechnology. And when the crew of the spacecraft would send to the mission, what would take even millenniums, that means that the neurons would get old. And then the craft or its computer can make the new brains by using advanced biotechnology and genetic manipulation. After that, the memories would return to those brains by using the EEG-stimulation. The brains would control the craft, and they might feel that craft is part of them. The idea of this kind of thing is taken from the book, what name I don't remember.

So the thing is that the craft would use artificial brains to make the decision.  The same methodology would affect also to the robot groups. This kind of thing would be the extreme hybridization with a living creature and a technical system. This idea has been created from the neurocomputers. The simplest solution, what we can imagine is simply connected the human brains to the Internet, and that thing has brought the mind of the writers the Cylons from the TV series "Battlestar Galactica".

The thing is that the Cylons or robot civilization would need living brains for creating innovations and ideas. The robot civilization would steal children, and then take them to the space station, where their nervous system would be connected to the computers, and then the system would benefit the brain electricity of that creature. The idea of "Solar Warden" has been taken from this kind of theory. In this case, the robots would take the person, who they want to guide them to the space station, and then keep them extremely weak gravity, which denies them to return to the planet, and that would keep them in the trap.

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Friday, November 22, 2019

"Annabelle" as the psychological weapon



"Annabelle" as the psychological weapon

The white noise or resonance weapon can cause a horrifying effect.

The modern version of wicked merchandise could be the recorder, which plays so-called "white noise". That means the infra-sound, what doesn't disturb people, but when the thing would repeat the same thing the time after time, that thing can cause the reaction, which might be very dangerous. This kind of things are easy to install in the box with some doll, and there is needed only to put the circuit breaker in the door, and when the victim would open the door the light is turning on, the tape or another record would start to repeat the words, what the person who has the bad will want to play to those people.

And if that thing is in the children's room, they might start to talk little "different" things, what the normal people talk about. If those boxes or dolls are equipped with resonance weapons, there is a possibility, that the bones of the people will be broken. But there is a possibility to make more advanced things by using this technology.

The "Annabelle-robot"

If we are thinking about the robots, the robot can look like "Annabelle", and it can be controlled by using the virtual reality and remote control equipment. It would use the mobile data system, and the components for that thing can be taken from the cell phones. The robot can be controlled by human operators, but it can also be connected to the computer center, which allows independent operations. There are two ways to make that robot.

One is that the robot itself has the components or the second version is that the controlling equipment is in the box, and the robot would be controlled by WLAN. WLAN has one problem. The operator must see the controlled robot. And the thing can be done by using the drone, which would carry the WLAN support station. The support station can also hide in things like a birdhouse.

That robot can sit on the wireless loader, which is used in the cell-phones. So the robot might have cameras on eyes, and microphones on ears, it can hear and see everything in the house. When the people, who are living in that building would leave the house, that robot can walk around, and then it can search for things.

The thing is that those robots are multipurpose tools, and they can connect the socket to the wall plug themselves. That means that when the doll is taken in the house, the controller would take the electric wire to that robot, and then the remote controller, who uses datagloves and virtual reality might make necessary electric works by using the tools, what are taken for the robot by using a drone. And the doll must just sit on the wireless loader, what is hidden in the seat. If the robot would be equipped with microwave weapons, that thing can harm electronics or cause terrible injuries or even death to people. That kind of thing is created by military intelligence for "gifts" to enemies of the state.

Thursday, November 7, 2019

How robots are recognized items?

How robots are recognized items?

When the robot is doing something, it must recognize a thing, what it handles, or it is useless. That means that a robot must have sensors, what it uses for recognizing the things, and those sensors can be everything. The simplest way to recognize items is just put every each bite an RFID (Radio-Frequency Identification) -sensor, which tells the robot what it is, and then robot just put the bite to the right basket.

This is enough if the bite should just move to one basket to another. Also, baskets can be equipped with RFID-sensors, which helps robots choose the right basket if there are multiple types of items to share in different baskets. Those things are effective, but the use of a robot is very limited and mechanic. But if there is a sensor under the table the robot hand can also pick up the item from the floor by using a very simple method.

The radio transmitters would just use triangle-metering for locating the dropped item, and the robot hand can pick it from floors. This idea is created for handling the radioactive material. The system looks at the sources of radioactive material by using the Geiger-meter, and that target can also find by using triangle metering. Then the robot cleaner can take dropped bites of radioactive material from the floors. This is one way to think about robotics.

But the thing is that if we want that robot is operating in the natural environment or on planet Mars and it should look for life, it must have a different kind of systems, what makes possible to look for fossils and other things automatically. That kind of system is needed, because, when Mars-rover would travel on that planet, it must react immediately, if it sees something, what might interest the researchers.

Artificial intelligence makes everything easier

Mars-rover must react independently if it sees something like green or something, what looks like layered stones, what might be at the waterfront. This means that the system must stop the run, and send the data to the Earth and the human operator would make a decision if the system would need to take samples or continue its journey. For that kind of mission, the system needs Lidars and cameras, which are delivering data from the object.

Those systems are modified versions of the DSMAC (Digital Scene-Mapping Area Correlation) systems, which are meant for targeting cruise missiles in their targets. In this system, which is used for searching fossils from Mars is a similar action procedure with the DSMAC systems. In the memory of artificial intelligence is stored in the images of the fossils, which is found on Earth.

And places where those fossils are also stored in the memory of those probes, and then they will compare those images with images, what are delivered by the sensors of the probes. If some images have similarities, the system would take a microscope and other images from that point, and send them to Earth for closer analyses. The artificial intelligence can make those missions easier to control.

Monday, November 4, 2019

Possibility to find primitive lifeforms on our solar system

Possibility to find primitive lifeforms on our solar system

When we are researching the possibility to find alien life, we often forget to describe, what kind of alien life we are looking for? Are we looking for intelligent alien life or primitive alien creatures like bacteria or some kind of amoebas? If we are looking for the last ones, we must realize, that those creatures might live even in our solar system, and one of the most promising place to find those alien creatures might be the Europa-moon of Jupiter. There is a possibility to find the creatures, what are similar to organisms, what is found near "black smokers" or underwater geysers.

That kind of life forms could be very often, and some of them would not have internal mitochondria, and that means that they would need an external heat source for maintaining their life. Those creatures would not move far from the volcanic eruption holes. And if those creatures would go too cold their metabolism would be stopped, and that thing makes them hard to notice.

This kind of things means that only when we can send very sophisticated laboratory to some of the Jupiter moons, and then the submarine, what the lander would deliver on the surface of Europa to the under-ice mission would send the ample of bottom mud to that laboratory we would get an answer, what kind lifeforms there could be. The thing is that the ice core of the Europa is very unstable, and that's why the laboratory must build on some other moons like Ganymede or Callisto.

Europa and Io are very active moons, that earthquakes and volcanoes can risk the mission. Callisto is the geologically stable moon, which would offer a good place for surface laboratories. Those laboratories would send to those moons by using unmanned spacecraft, and the robots that are using artificial intelligence would build the structures. Before astronauts can send to those moons, the system must confirm, that is there some lifeforms on those moons, and is that lifeform dangerous.

There is a possibility that also Callisto has some kind of lifeforms in the holes of ice. Those creatures might look like some kind of alga or Diatoms, but the thing is that before this kind of thing is confirmed, we cannot be sure that the mission would be so safe as possible. The problem with those explorations is that they could take many years. And if some astronaut would pollute by the alien lifeform, that could be risk also on Earth.                                                                                                   

Tuesday, October 29, 2019

The real-life version of the movie "Arachnophobia"

The real-life version of the movie "Arachnophobia"



Have you seen the movie "Arachnophobia"? In this movie, the "bad guys"  are the spiders, what have been mutated, and they would danger the entire human race, but when we are thinking about the modern top technology, we could create even more dangerous tool by using artificial intelligence controlled "Von Neumann" machine, what is the fully automatized robot factory. The robot specialists which can use artificial intelligence and right laboratories can create so evil machines, that the spiders of "Arachnophobia" are a child's game, in the comparing of the real-life elimination systems.

In this scenario, the military engineers would make the hybrid robots, what will use in battlefields for elimination missions. That kind of robot factories can be used to create the nano bugs or small size robots, what are looking like normal bugs or spiders, and when we are thinking about the computer or artificial intelligence controlled spiders, what can search target and input the deadly chemicals in those victims.

The form of a giant spider would be a good psychological effect for the automatized factory, what can control those robot spiders and the communication antenna of that thing might look like the net of a spider. The hybrid technology would make those systems more stealth, and the poison, what those robot spiders will inject to victims would get from the cell cultures, where is the living cells, what is creating the spider poison. That kind of system can be used in the tactical missions. They can use miniaturized fuel cells to create electricity, and those systems might be controlled over the internet.

But when we are thinking about "Polonium murder" there is a possibility, that there would be used one of the most advanced systems, what mankind ever created. When we are thinking about the robot bug, what might be used in that mission, the system can be operated by using remote-controlled tools. That remote-controlled robot bug might be brought to the British airspace by using aircraft or drones.

Then it would drop in the operational area, and then the operators would aim the system from another side of the Earth if they want. They are equipped with cameras and the  GLONASS or GPS-location system and satellite-based communication systems, which allows the operators to control them.

That system might look like a swift butterfly, and there are two ways to get deadly polonium 210 in the body of the victim. The radioactive material might put in the golden chamber inside that vehicle because it denies detecting this thing by using detectors, what are sniffing the radioactive radiation.

The first one is to drop it to the coffee, but there is a possibility, that the targeted person would not drink coffee, and the second one is to use the nanorobot, which is equipped with a small airgun. That allows shooting the bite of polonium in the body of the victim, and that thing makes the possibility to accomplish attentate surer than putting the bite of polonium in the food. The thing is that in this case, the operator can use remote-controlled tools, and there is no risk that the assassinator would speak with the victim, and accidentally gets the information, why that victim must die? What Alexander Litvinenko knew, that he must be murdered that way?

Sunday, October 27, 2019

The robot suit or hollow robot

The robot suit or hollow robot

Have you seen movies, where the "bad guy" comes in place, and we see only the shadow inside the clothes? So that thing has brought one thing in my mind. We can create spacesuit-type clothes, which can walk autonymously on the streets. In this scenario, the HULC-type robot would be installed to the spacesuit, and then that hollow robot can walk on the streets. The thing is that this kind of robots might have faces, which makes them look like a normal person, but the size of that kind of robots would be big.

And there is one thing, what people normally don't mention when they are thinking about this kind of robot, and those things are connected to the legend of "Slenderman". The thing is that if the robot has enough big size, and the ability to open itself, it can take the person inside it, and then the laughing gas would be given to the victim, and this robot can just walk away with a captured person inside it, and nobody knows a thing about this kind of cases.

So the thing is that if we would want to make this kind of robot, we might make the man-shaped thing, which can open itself at the waist. Then it would take the person inside it, and then walk away. This kind of systems can be used as the rescue systems in the very hard conditions, and if the own troopers have been captured or injured, this kind of walking "ambulance" can take the person inside it, and then walk to the place, where the helicopter can arrive.

Or that robot can also use the jetpack to fly to cargo plane, and this might be a good advantage in the many operations. In some visions, that kind of robot can also capture terrorists and other criminals and take them to base for interrogation, and there might be much use for that kind of system in the hard and difficult areas. That capsule might be equipped with a robot medical system, which could fix the injuries. In some visions, this kind of robot can also operate in the Mars flights as the support of the crew. In some visions far in the future, this kind of terminator or the man-shaped robots would carry the frozen fetuses in some distant planet.

If we would want to travel to other solar systems and colonize them, and we cannot create a craft, what can travel faster than the speed of light, we could send morulas, what are stored in temperature, what is near the absolute zero kelvin. Then the craft is landed after the flight, what has taken maybe even thousands of years, those robots would take care of that population, and they might protect and teach them.

And the fetuses might be packed inside the human-looking robots, what would carry the freezers, and that would make sure that the mission would be successful. Those robots would be controlled by highly sophisticated artificial intelligence, and it will make this kind of missions possible.

Sunday, October 20, 2019

Could artificial intelligence take humans or animals under control?

Could artificial intelligence take humans or animals under control?

Sometimes we are seeing movies where humans are taken under the control by some hostile operator. There is a possibility that the person would accidentally put the system, which is sending the electric shocks to the frontal lobe accidentally. This means that the system that can be set in the helmet or some kind of bandanna can be controlled by artificial intelligence.

And the computer can play a human or animal like a character in the computer game. So this kind of thing would be the system of the next generation advanced rescue teams or military operators. There is one question: is the mysterious JADE HELM this kind of system.

In the beginning, I must say that if some person would take to control, there is a possibility to put that individual to make the most horrifying things. Or simply to put the victim to run self to die, and that kind of thing makes those systems extremely dangerous in the wrong hands, and that's why we must realize that when we are developing that kind of things, we must carefully think, where we are going to use them, and who we will give them.

But at the same time, that kind of system can save human life. Or what would you think about the cases, when the person has got terrible wounds and needs immediately brain surgery. The surgeon or artificial intelligence, what is learned those operations can take the fireman or anybody, who have that system under control, and start the operation.

The cursed jewelry is things, which are often mentioned in the horror stories. Those bandanas are starting to control the human brains, and turn that person to some kind of monster. The thing is that making that kind of piece of jewelry by using modern technology is possible. And the thing is that electric shocks, what are given through the frontal lobe would take the body of the person under the control.

That kind of jewelry is created for the use of the special forces or NASA astronauts and the thing is that those systems can be equipped with action cameras. The mission of that kind of thing is to make sure that the operator, who would be in a very isolated place can have every necessary skill, what is needed in the long term space operations, or undercover actions in hostile territory.

A modern version of those systems can use the microchip controlled systems, which communicate through satellites. The thing is that the operators can make things like brain surgery, without the need to send physical help to that area. The system would installed to the helmet or bandanna, and it would be the ultimate tool for the special forces operators or astronauts.

When we are thinking about situations, what could happen in the distant space or the dark forests, they might need special skills, and every person cannot train to handle every kind of situation. So the support team can handle those situations by taking those persons under the control is the official explanation for the creating of those systems.

But as we know, that kind of system is more capable than we ever imagine. That thing allows using monkeys like chimpanzees as the replacers of the human operators. And that thing guarantees that the operator ever speaks to people about things, what that "silent soldier" has seen. Those systems can communicate with computers by using WLAN, and they can use to give an extra vision of the operation area by connecting animals or drones straight to the brain core.

And that would make the user of this kind of device superior to many operations like rescue units, what is working in the bad conditions, and people need lots of medical attention. When we are creating this kind of equipment, we must realize that this kind of technology can be used horrifying way wrong.

This kind of system can turn human beings into robots, which are following the orders that are given by using computer bandanna. And this makes possible to create even nuclear weapons by using remote-controlled team, and the scientists can stay away from the nuclear material.

That makes the operation safer, and the team, what works inside the laboratory might not have training or education at all, which makes it easy to cut the communication link between those persons, who should be harmless if they are leaving with nuclear material. Non-educated persons would not make unauthorized nuclear weapons, and the scientists would not need to handle dangerous things.

Wednesday, October 2, 2019

The vision of robot-human, what can live forever

The vision of robot-human, what can live forever

We are sometimes facing the visions of the robot-humans, what can live forever. In this vision, the man would be hybridized with machines, which will make them live a very long time. In this text, I will think about what kind of system would this be, and what kind of challenges it would face.

And at the beginning, I must say, that the system might easy to make from the mechanic side. So robot that carries the nervous system can be nuclear or fuel cell operating, and the problem is the living nerve tissue, what needs nutrient for living. There are two ways to solve that kind of problem. One is the remote-controlled body, which is connected to brains, which are living on the platform under the glass crop, and those brains can communicate with the esoteric body by using a high-speed data connection.

And another is that the brains or nerves would be in the robot structure itself. If we think about the safety of this hypothetical system, the remote-operating system would be of-course safer. But here I will think, what the local or internal controlled version of this vision would look like. By combining this solution with advanced nanotechnology, what will remove bacteria, wastes, and viruses from the blood and fixes the DNA, this kind of system could be possible to make in the future.

The system would be a robot structure, where the brains and spinal cord would transfer to the carbon-fiber body and the communication with this robot and living nervous system would happen by using neuro-contact, which is connected to the decoder, what transforms EEG to commands for computers.

This kind of system could be called bio-terminators, the robots, that are controlled by the human nervous system. The nutrient can be given taken from the system, what would be the bioreactor, what mission would be delivered the food to the artificial blood vessels.

Blood of that artificial organism must of course renew, and that biological support system needs the bone marrow, which creates new blood, and the artificial liver, which would remove the waste from the blood. And that system can be liver cells, what is living in the can, as well the cells of the bone marrow. The system must sometimes fill with a physiologic salt solution, and that thing would make possible to create artificial blood for that robot.

The robot could work like an artificial vampire, which drinks blood, but in this case, all immune cells must remove from the blood, because those cells would destroy the nervous system. That solution is less complicated and easier to make, but the viruses can infect the nervous system, and that's why the internal made blood would be a better solution. If in that system would get bacteria or viruses, it can be destroyed.

By combining this Frankenstein's monster with nanotechnology, it would work.

As in many cases, the nanotechnology would give the answers to that problem. In some versions, the blood itself would be replaced by nanomachines, what delivers nutrient to neurons. In fact, in some visions, the nanomachines would replace the immune system of AIDS-or cancer patient, what would make possible to transfer the tissues like wealthy bone marrow in the patient's body.

In this kind of version, the nanorobots would replace the immune cells, and they can also make many other operations in the brains. They can connect brain cells, which makes those cells or their connections operate faster, and they can clean viruses or bacteria from the blood, which makes this kind of systems very interesting.

Also, in the system is another very bad problem, if we want to live forever in this kind of metalcore or under the glass crop in some laboratory. The DNA in the brain cells and other biological structures will get old. That's why those brains must be covered from the radiation, and there is a possibility that temperature in those tissues would be very low, which denies the function of bacteria. And by using advanced nanomachines also DNA can be fixed when it would be damaged.

Monday, September 2, 2019

Artificial intelligence and the new type of military systems

Artificial intelligence and the new type of military systems

As I have written before artificial intelligence is a perfect tool for handling big entireties. That makes it a perfect thing to control new kind of nano- or miniature machines. Those machines can be the next-generation weapons and the difference between miniature robots and nerve gasses is that even if the person has a protective suit, those machines can wait until the mask is removed, and then slip in the body of the combatant.

When the intelligence officer sees the suspected target, the robot would be sent to take the sample. But maybe in future, the Laser-spectrometers can be used to take the DNA samples remotely, and those systems are using the same technology, what is created to recognize the genetic illnesses. The system would shoot laser-ray through the breath, and analyze the elements, what are found in there. And then the robot would send to make sure that the target is who wanted to be eliminated.

The recognition of the target would happen by DNA test, what could be done, that first the nano-sized mosquito-looking robot would take. Those robots can take the only couple of cells from the skin of the target. Then the robot would fly to the field laboratory, what can be in the pod of the helicopter, and then the sample might be analyzed by using remote control.

At the same time, when the system is taking the sample, it would put the small RFID chip to the skin of the target, and then the operator must only know the number of RFID, what is in each person, where the sample is taken. And then the system would tell that "number 9" is the person. Then another robot would inject the egg, where is the parasite or some bacteria. In some scenarios, those robots can use poison, which activates the programmed death of the cells in the target's body.

They could be the same worm-looking robots, which are created for brain surgery, and those machines can destroy only centers, what are controlling the own will of the person. So they leave the combatant looking like just fine, and the problem is that every single movement must be commanded to that person. That means that those machines are making the lobotomy for the combatant.

Difference between that kind of systems is that they can destroy the certain cell line. This makes those machines more dangerous than any weapon system before that. When we are thinking about the nano-size robots, what is created for research the human body, we are forgotten that the same machines can bring the new kind of biological weapons like parasite worms in the body of targeted persons.

Measles is deadly parasite worms and the emperor of Rome, Sulla has suspected to died because of those small worms, which causes the horrifying death if they are eaten accidentally. The new kind of robots can slip those eggs in the food of the enemy. This kind of parasites are deadly in all the cases, but normally that kind of parasites are transferring to the human body from the poisoned flesh.

So what is the infected person is vegan? The thing what makes that kind of diseases more deadly would be that the doctors would not suspect those things. And the nanomachines allows delivering that kind of organisms with the new kind of force. The nano-size robot mosquitos can put those eggs inside the body of the target, and this makes those worms very deadly. The big-size parasites have not been used in military actions on large scale, because they are hard to deliver.

But the new type of miniature robots is making delivering those organisms very effectively. The thing of the parasitoid worm is that those worms are not normally transferred from one person to another. And that kind of things is making weapons more effective and horrifying than ever before.

Wednesday, July 31, 2019

The problems with robots and national security

The problems with robots and national security

On the Internet are many films about robots, which are created looking at exact humans. Those robots speak, act and look like real persons, and in some cases, those robots would be used as the spies or undercover police operators. The thing is that there is not so disgusting thing, what robots cannot do. And that makes those machines suitable tools for slipping the agent in some persons nearest social environment.

The robots can act as a spouse, but they can deliver every single bit of data, what they have collected to the command center. The thing is that the human-looking robots would have WLAN, and mobile Internet connections for making sure, that the robot would get enough assistance from the cloud computers, what mission is to help the system finish its mission with offering calculating assistance. Or in hardest cases, the human operators can solve the problem, and send the solutions straight to the hypothetical robot, what would be the remote-controlling unit or extension of the multilayer computer system.

When we are thinking the robots like "Sophia", what are the example, what happens, when artificial intelligence would connect to robot, what might in future look exactly like a human, and feel like a human, we would face the thing that this kind of devices are really good intelligence operators, because they have not feels like humans. That's why those robots are really dangerous. They can do anything for accomplishing their mission, and if this kind of robots is connected to artificial intelligence or large-scale database, what has been collected from some person, they can offer perfect satisfaction and come close of that target. 

The thing is that those robots would feel nice, they might satisfy persons deepest willings, and they can look like a human. That means that those machines can even marry their targets, and even if they are looking pretty, those robots might have hydraulic muscles and radiological weapons, which makes them dangerous. And thig, what makes them different with people, is that they cannot feel things like a human.

But they can emulate humans very well. Those robots can write diaries, and they are seeing if the person doesn't like some texts, or lies, when they are asked have they read those markings. The thing is that those diary markings would be made for flatter the target. And when the robot does something, it would not feel pain. That means when the arm is turned to a certain angle, the robot might say, that thing hurts. But the real thing is that those robots cannot feel anything.

Lack of feelings makes robots difficult to handle. If somebody would give some mission to the robot, it would do everything to make that mission accomplish. The thing is that if the robot plays some kind of spouse, it would have programmed the ghost protocol, that the targeted individual must be eliminated if that inmate would realize that the spouse is some kind of robot. And also those robots, what is created for intelligence work might be very jealous, because of another relationship would risk the mission of the machine.

Computer researchers published a new algorithm that revolutionizes web management.

The new database structures require new and powerful tools to manage databases in non-centralized solutions. The new data structures can be ...