BRAIN CONTROLLED CAR FOR DISABLED
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#1
12-10-2010, 09:56 AM



BRAIN CONTROLLED CAR FOR DISABLED


Presented by



V.DIVYA SRI M.V.LAKSHMI
III CSE III CSE
SHRI VISHNU ENGINEERING COLLEGE FOR WOMEN
Bhimavaram, W.G.Dist, A.P.


ABSTRACT

This paper considers the development of a brain driven car, which would be of great help to the physically disabled people. Since these cars will rely only on what the individual is thinking they will hence not require any physical movement on the part of the individual. The car integrates signals from a variety of sensors like video, weather monitor, anti-collision etc. it also has an automatic navigation system in case of emergency. The car works on the asynchronous mechanism of artificial intelligence. It’s a great advance of technology which will make the disabled, abled.


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.doc   BRAIN CONTROLLED CAR FOR DISABLED.doc (Size: 707 KB / Downloads: 724)
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23-12-2010, 03:31 PM

Prepared by:A. Divya and A. Lavanya


.ppt   BRAIN CONTROLLED CAR.ppt (Size: 1.49 MB / Downloads: 620)

introduction
Brain driven car which would be of great help to the physically disabled people.

These cars will rely only on what the individual is thinking.

Any physical movement on the part of the individual is not required .

a great advance of technology which will make the disabled, abled.
ARTIFICIAL INTELLIGENCE
By BRAIN COMPUTER INTERFACE researchers are able to produce artificial intelligence.

Brain +computer = artificial intelligence
BIOCONTROL SYSTEM
The biocontrol system integrates signals from various other systems

It comprises of :-

Brain-computer interface
Automatic security system
Automatic navigation system

AUTOMATIC SECURITY SYSTEM
The EEG of the driver is monitored continually.

When it drops less than 4 Hz then a message is given to the driver for confirmation and waits for sometime, to continue the drive.
AUTOMATIC NAVIGATION SYSTEM
It automatically monitors every route the car travels and stores it.

The map database is analyzed and the shortest route to the destination is chosen.

By xm satellite radio the computer drives the car automatically.
Brain computer interface
It sometimes called a direct neural interface or a brain-machine

It is a direct communication pathway between a human and an external device.

Two-way BCIs would allow brains and external devices to exchange information in both directions.

EEG Transmission
EEG (electroencephalogram)

A wide screen of the computer is placed at an angle aesthetically suitable to the driver. Each program can be controlled either directly by a mouse or by a shortcut.




Specialty of the car
Once the driver (disabled) nears the car. The security system of the car is activated.

Robotic arms assist the driver to his seat, As soon as the driver is seated the EEG helmet is placed on the drivers head

Images as well as thermo graphic results of the driver are previously fed into the database of the computer.






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19-02-2011, 03:57 PM

Presented by

V.DIVYA SRI M.V.LAKSHMI
III CSE III CSE



.doc   BRAIN CONTROLLED CAR FOR DISABLED.doc (Size: 696 KB / Downloads: 202)
BRAIN CONTROLLED CAR FOR DISABLED USING ARTIFICIAL INTELLIGENCE
ABSTRACT

This paper considers the development of a brain driven car, which would be of great help to the physically disabled people. Since these cars will rely only on what the individual is thinking they will hence not require any physical movement on the part of the individual. The car integrates signals from a variety of sensors like video, weather monitor, anti-collision etc. it also has an automatic navigation system in case of emergency. The car works on the asynchronous mechanism of artificial intelligence. It’s a great advance of technology which will make the disabled, abled.
INTRODUCTION
The video and thermo gram analyzer continuously monitor activities outside the car. Once the driver (disabled) nears the car. The security system of the car is activated. Images as well as thermo graphic results of the driver are previously fed into the database of the computer. If the video images match with the database entries then the security system advances to the next stage. Here the thermo graphic image verification is done with the database. Once the driver passes this stage the door slides to the sides and a ramp is lowered from its floor. The ramp has flip actuators in its lower end. Once the driver enters the ramp, the flip actuates the ramp to be lifted horizontally. Then robotic arms assist the driver to his seat. As soon as the driver is seated the EEG (electroencephalogram) helmet, attached to the top of the seat, is lowered and suitably placed on the driver’s head. A wide screen of the computer is placed at an angle aesthetically suitable to the driver. Each program can be controlled either directly by a mouse or by a shortcut. For starting the car, the start button is clicked. Accordingly the computer switches ON the circuit from the battery to the A.C.Series Induction motors
.BIOCONTROL SYSTEM
The biocontrol system integrates signals from various other systems and compares them with originals in the database. It comprises of the following systems: Brain-computer interface Automatic security system Automatic navigation systemNow let us discuss each system in detail.
BRAIN – COMPUTER INTERFACE
Brain-computer interfaces will increase acceptance by offering customized, intelligent help and training, especially for the non-expert user. Development of such a flexible interface paradigm raises several challenges in the areas of machine perception and automatic explanation. The teams doing research in this field have developed a single-position, brain-controlled switch that responds to specific patterns detected in spatiotemporal electroencephalograms (EEG) measured from the human scalp. We refer to this initial design as the Low- Frequency The EEG is then filtered and run through a fast Fourier transform before being displayed as a three dimensional graphic. The data can then be piped into MIDI compatible music programs. Furthermore, MIDI can be adjusted to control other external processes, such as robotics. The experimental control system is configured for the particular task being used in the evaluation. Real Time Workshop generates all the control programs from Simulink models and C/C++ using MS Visual C++ 6.0. Analysis of data is mostly done within Mat lab environment. FEATURES OF EEG BAND Remote analysis data can be sent and analyzed in real-time over a network or modem connection. Data can be fully exported in raw data, FFT & average formats. Ultra low noise balanced DC coupling amplifier. Max input 100microV p-p, minimum digital resolution is100 microV p-p / 256 = 0.390625 micro V p-p. FFT point can select from 128 (0.9375 Hz), 256 (0.46875 Hz), 512(0.234375 Hz resolution).Support for additional serial ports via plug-in boar; allows extensive serial input & output control.Infinite real-time data acquisition (dependent upon hard drive size).Real-time 3-D & 2-D FFT with peak indicator, Raw Data, and Horizontal Bar displays with Quick Draw mode.Full 24 bit color support; data can be analyzed with any standard or user.Customized color palettes; color cycling available in 8 bit mode with QuickDrawmode.Interactive real-time FFT filtering with Quick Draw mode. Real-time 3-D FFT (left, right, coherence and relative coherence), raw wave, sphere frequency and six brain wave switch in one OpenGL display.
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02-03-2011, 12:30 PM


.doc   BRAIN CONTROLLED CAR FOR DISABLED.doc (Size: 826 KB / Downloads: 176)
1. ABSTRACT:
This paper considers the development of a brain driven car, which would be of great help to the physically disabled people. Since these cars will rely only on what the individual is thinking they will hence not require any physical movement on the part of the individual. The car integrates signals from a variety of sensors like video, weather monitor, anti-collision etc. it also has an automatic navigation system in case of emergency. The car works on the asynchronous mechanism of artificial intelligence. It’s a great advance of technology which will make the disabled, abled. In the 40s and 50s, a number of researchers explored the connection between neurology, information theory, and cybernetics. Some of them built machines that used electronic networks to exhibit rudimentary intelligence, such as W. Grey Walter's turtles and the Johns Hopkins Beast. Many of these researchers gathered for meetings of the Teleological Society at Princeton and the Ratio Club in England.
Most researchers hope that their work will eventually be incorporated into a machine with general intelligence (known as strong AI), combining all the skills above and exceeding human abilities at most or all of them. A few believe that anthropomorphic features like artificial consciousness or an artificial brain may be required for such a project and implimentation.
2.INTRODUCTION:
The video and thermogram analyzer continuously monitor activities outside the car. A brain-computer interface (BCI), sometimes called a direct neural interface or a brain-machine interface, is a direct communication pathway between a human or animal brain (or brain cell culture) and an external device. In one-way BCIs, computers either accept commands from the brain or send signals to it (for example, to restore vision) but not both. Two-way BCIs would allow brains and external devices to exchange information in both directions but have yet to be successfully implanted in animals or humans.
In this definition, the word brain means the brain or nervous system of an organic life form rather than the mind. Computer means any processing or computational device, from simple circuits to silicon chips (including hypothetical future technologies such as quantum computing).
Once the driver (disabled) nears the car. The security system of the car is activated. Images as well as thermo graphic results of the driver are previously fed into the database of the computer. If the video images match with the database entries then the security system advances to the next stage. Here the thermo graphic image verification is done with the database. Once the driver passes this stage the door slides to the sides and a ramp is lowered from its floor. The ramp has flip actuators in its lower end. Once the driver enters the ramp, the flip actuates the ramp to be lifted horizontally. Then robotic arms assist the driver to his seat. As soon as the driver is seated the EEG (electroencephalogram) helmet, attached to the top of the seat, is lowered and suitably placed on the driver’s head. A wide screen of the computer is placed at an angle aesthetically suitable to the driver. Each program can be controlled either directly by a mouse or by a shortcut. For starting the car, the start button is clicked. Accordingly the computer switches ON the circuit from the battery to the A.C.Series Induction motors.
3.BIOCONTROL SYSTEM:
The bio-control system integrates signals from various other systems and compares them with originals in the database. It comprises of the following systems:
1. Brain-computer interface
2. Automatic security system
3. Automatic navigation system
Now let us discuss each system in detail.
3.1.BRAIN – COMPUTER INTERFACE:
Brain-computer interfaces will increase acceptance by offering customized, intelligent help and training, especially for the non-expert user. Development of such a flexible interface paradigm raises several challenges in the areas of machine perception and automatic explanation. The teams doing research in this field have developed a single-position, brain-controlled switch that responds to specific patterns detected in spatiotemporal electroencephalograms (EEG) measured from the human scalp. We refer to this initial design as the Low- Frequency Asynchronous Switch Design (LF-ASD)(Fig.1).
The EEG is then filtered and run through a fast Fourier transform before being displayed as a three dimensional graphic. The data can then be piped into MIDI compatible music programs. Furthermore, MIDI can be adjusted to control other external processes, such as robotics. The experimental control system is configured for the particular task being used in the evaluation. Real Time Workshop generates all the control programs from Simulink models and C/C++ using MS Visual C++ 6.0. Analysis of data is mostly done within Mat lab environment
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02-10-2012, 11:17 AM

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#6
10-09-2013, 12:02 PM

if anyone think that car should collide with wall what will happned then
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