The Analysis Of Brain Computer Interface System

Table of Contents

This is an introduction.

Design Methodologies

In conclusion,

Internet has made communication easier in today’s society. People think of innovative ways to communicate via mail, even though technologies are updated every day. In this article, I describe “Brain Reader”, an electronic device that composes the mail body by analyzing brain signals. This device is composed of a chip that can be attached to the upper part of a user’s ear. It also contains a recorder for recording brain signals. The transmitter device is connected to the system and decodes brain signals. It then writes directly into the interface. It could be possible to have a direct conversation between the brain and the system without typing any text into the system. This system will save time typing and work efficiently without wasting any effort.

IntroductionThe research on the brain of a human is one of most challenging areas in Artificial Intelligence. Artificial Intelligence’s primary goal is to “show how humans think and act (in every aspect) as a computer can”. Researchers who have been researching this area for over 40 years finally came up with “NeuralNetworks”. A neural system is a group of connected neurons. A Biological Neural Network consists of the connections between real biological neurons. These neurons have a functional or chemical connection to other neurons. Electrical signaling is used for the information processing. Artificial Neural Networks are made up of artificial Nodes or neurons. Artificial neural networks can be applied to many different things, including speech recognition, image processing and brain reading. Neuro imaging is a technique that examines the neural network activity, brain structure and function.

Brain chips existed for two decades and were similar to computer chips used as sensors and actuators. It is possible to design a brain-computer interface. It has pseudo-smart software. The brain cells are electronically linked to the silicon chips. How to connect neurons with chips is a complex task. The electrode array is used to link the two. The device, once inserted into the body, allows contact between electrodes and neurons. The nerves are directly connected to silicon. This will allow us to read and build electronic systems, as well as the way neurons in humans are connected. This system can change the way brain activities are performed. We can interface brain with computer in this manner. This interface allows direct communication between the human nervous system and this interface.

After reading the above points, I thought that we could use this feature to compose an E-mail message without having to type in text. This device is called the “Brain Reader”.

Design MethodologyThis is a sophisticated device that stores the brain signals in a small chip, then transmits these electric signals via a transmitter to an attached system. These signals are then decoded into text. Text can be directly entered into the interface to compose E.mail. This uses Brain Chips (silicon chips), Transmitters, encoders and decoders.

In this different signals used like electroencephalography, electric, radio-frequency, electrode, analog and digital signals and also band pass filters, amplifiers, antenna and Wi-Fi.

This paper was processed using different algorithms, such as Pattern Recognition to match and Fast Fourier Algorithm for digital recording.

Brain Computer Interface (BCI) research started in the 1970s. The University of California Los Angels was the first to conduct this work. A grant from NSF, followed by DARPA’s contract, were the next steps. After using Silver Foils, Mr Berger attached the Silver Wires to the human scalp with rubber bandages. He connected this sensor to a Siemans Double Coil Recording Galvanometer. To store brain signals, the interface requires surgery. For this to not happen, you can externally embed a small chip in any part of your body. Ear is the best place to receive brain signals in any body part because of the direct nerve connection. The Brain Reader chips are inserted on the upper part. Once it is inserted externally it starts the recording of electroencephalography signals generated by brain. The transmitter records the signals and sends them to the system. The decoded digital signals will be converted back into Unicode Text format. The text will now be displayed on the E mail interface. Compose body. When you reach the limit of how much data you need, keep the chip connected to your device. Remove the transmitter from your device if you are done sending text. The chip is also removed. As we don’t type any text, the amount of work automatically decreases and efficiency improves.

Digital communication changes rapidly from day to day. In order to keep up with the times, technology is also being updated. This device offers the functionality of traditional input devices in a compact, convenient and hands free form. This device allows a person to do their mailings invisibly while he is doing other things. In the future, there will be no need for hand-operated devices. Currently, it is used only in the mail interface. In the future it will be implemented in IDEs without having to create programs. It is possible to make transactions without credit cards/debits cards. Just by reading the pin in your brain, you will have done it.

ConclusionBased on this discussion, it is clear that the E-Mail system will be compatible with this device. The typing time can be reduced and the mailing system will become more efficient. Email is very easy to use for the layman. Email system will be faster. The hours spent in front a system for email transfer can be avoided. Wireless will be supported. The work could be expanded to eliminate keyboards from all domains.

Author

  • katebailey

    Kate Bailey is a 27-year-old educational blogger and volunteer and student. She is interested in educating others on various topics, and is passionate about helping others achieve their goals. She believes that education is the key to success, and hopes to share her knowledge with as many people as possible.

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