Showing posts with label development. Show all posts
Showing posts with label development. Show all posts

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/

Tuesday, June 18, 2019

A new type of protective suits are claimed to inspired by the UFO-sightings

A new type of protective suits are claimed to inspired by the UFO-sightings

The new type of protecting suits are created by inspired by the UFO-cases. Those new kinds of protective suits are far more advanced than some HULC-exoskeleton, and they are also based on so-called active technology, where the hydraulic parts of the HULC are replaced by using the artificial muscle and skin cells.

There is a possibility to use the silicone-based "bags", which is filled with electrolytic liquid, which would react to the electricity. That means that at both sides of this bag is the electric wire, what would make the electrolytic liquid move in the bag. And that makes the bag acting like real muscle cells.

Nanotechnology gives the possibility to create different types of structures, and one of them is the spring, what is pulling together, when the electricity is connected to it. So there are many ways to make those "active silicone muscles", and maybe in the future, we might have the possibility to get the silicone muscles, which will give us more strength.

What if there is a possibility to use living cells in that kind of things?

But the most fascinating idea of those protective suits would be using the living tissues. This kind of ideas to make those suits by using living cells would revolutionize the design of protective suits and other technology. In this kind of solutions, the inner and outer layers of the suit would be mylar, where is the gold powder, and that makes this layer insulator against the radiation and chemical components.

That kind of biomechanic protective suit can fix itself if there is damage, and the living tissues allow to use of natural nutrient for those systems. The thing is that the muscle cells are connected to the human nervous system by using multiple EEG-sensors, what is controlling extreme thin electric wires, what is connected to the muscle cells. This kind of systems would allow creating a new type of protective equipment.

Thursday, May 2, 2019

A new microchip can revolutionize the research of artificial intelligence.


A new microchip can revolutionize the research of artificial intelligence.

A new microchip can revolutionize the research of artificial intelligence.  

In Scientific American magazine is a story of the microchip, what controls with brains, and that thing can revolutionize many things. It can use to control prosthetics, exoskeletons and other equipment like aircraft cars, and human-shaped robots. The thing is that this kind of system can also revolutionize the computing and development of artificial intelligence because that equipment can teach computers, how the brains use the fuzzy logic in computing in the natural situations, and that system can collect the data about things, what human does while we are driving cars or flying aircraft.

Those systems can also communicate with the human-shaped robots what can be sent to the solar system, and if the space program will use only robots to take samples and research the particles, that would save humans. And also if human exploration to another planet would someday be true, the robots can make the base to that particle before human colonialists are coming. But the same robots can also be used in the combat zone as the combatants, and this kind of solutions might interest the organizations like the Pentagon.

The ability to connect the brains straight to the Internet would also create a new kind of experience for the users of this kind of equipment. It allows loading data straight to the brains and that will make possible to create the new kind of educational systems, what will be more sophisticated and flexible than ever before. Also, those systems might used as brainwashing equipment, which would be very effective, because the human brains would receive more information if it would transmit straight to the brain core. And otherwise, this system allows brains to communicate with the computers directly without keyboards, mouses, and joysticks, what makes this system effective control equipment for the robots and other equipment.

The idea of this system is introduced in the book "Firefox"

That kind of things would be effective if the system is integrated into the computer of the vehicle. And the EEG-diagram would be compared with the things, what the automobile or aircraft will do, and that data can improve the ability to create more sophisticated versions of artificial intelligence.

But if we would think about the situation, that the brains would connect straight to the computers of the things like combat aircraft, and the pilot would control that thing by using the EEG-signals, that thing will give the aircraft more effective, than we ever could imagine. If the pilot would control the aircraft by using EEG, that thing causes the situation, where that person must not touch the control sticks. That allows the aircraft turning tighter, and the send advantage would be the ability to  use control system without use fingers, which gives it a little benefit because there is no reaction time while the nerve feedback goes to fingers, and that thing is extremely important in the cases, that the aircraft would use lasers or some other directed energy weapons.

The speed of those weapons would be very high and in this case, even the micro-second expectation would be devastating, because the weapon would travel in the speed of light. And that person can also control the sub-drones by using brain waves. But there is a possibility to collect the data about the things, what pleases people, and that would give the possibility to create incredible commercials. But this thing would be very problematic, because the data is collected from the persons deepest thought, and that kind of things can be very problematic in ethics and moral

Monday, March 11, 2019

Every each of the prototypes has problems

Every each of the prototypes has problems

The reason, why I wrote this text is that if the persons would try to make something new, they must dare to make that thing, and in the developing process is always problems and disappointments. The thing is that those problems and errors are making the development process interesting. And in fact, the innovation needs a very long process of forming the merchandise, which can be sold to the customers.

Below this text is a link to the film, where is portrayed the all-electric aircraft, which made only five minutes flight. The manufacturers of this prototype are promising the 300 km/h speed and an hour flight time. This means that they should get brand new technology for that goal, and the thing is that they didn't tell, what kind of batteries those persons used in this project.

Maybe they used the car batteries of some kind of systems like laptop batteries, what is taken from some garbage. I don't know about the budget of those developers, but the first prototype is always problematic, and there is always many things to fix until the commercial solution would be ready to deliver to the customers.

That means that there are many problems to fix, and the thing is that the new and lighter batteries are the thing, what those persons would need to get. Or they must turn to use fuel cells. The thing is that every single prototype on earth has problems in the maiden flight. And if the thing is, that those enthusiasts didn't even have the most sophisticated and newest battery technology, that five minutes flight was a very good reach.

And in the end, I must say, that don't be so hard, when you criticize that kind of projects. The world needs new innovations and if people are too tough for that kind of ideas nobody even dares to attempt anything. This means that good ideas are staying in the boxes, and that thing would not take anything forward. The innovation must come to public knowledge, that it can form to the product.

https://www.youtube.com/watch?v=RLqzatnVAfA

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