WIRELESS SPY ROBOT

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Mrs. P. M. Chavan
Shruti Kharde
Mukta Jade
Ankita Jadhav

Abstract

              A robot is an integration of mechanics, electronics and software. Robots are essentially a self contained tribute to the wonders of technology. Robots if well designed in architecture and programmed with concepts of artificial intelligence can ease the human work. There are many different reasons for using a robot. Use of robots reduces labour and cost by automating recurring tasks. Human intervention is avoided hence less chances of errors and better accuracy can be expected. And most importantly the areas where human life can have risk, danger; at such places robots can navigate dangerous places and potentially save lives. The most advanced robotic models use fast computer processing, high-definition cameras, artificial intelligence and long-range sensors. They are used for surveillance. Our project is all about developing a wireless surveillance robotic vehicle which can navigate through obstacles with the help of sensors, embedded system and its programming. It will be able to capture the footage or pictures of area with its camera eye and send them back using wireless transmission technology such as Bluetooth. Surveillance of international border areas, industries, banks, shopping malls, and any other suspected areas is a difficult task to be done. It is not possible to scrutinize everything at each and every moment. In this case, a requisite solution can be a robot which automatically detects any suspicious activity or condition and reports to the control unit. This project is on a surveillance robot which can budge in an area, send images and videos. The whole process can be run on a voice command system. After the data collected from the robot, data are appraised and analysed to get an understandable idea of the surveyed area.

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How to Cite
[1]
Mrs. P. M. Chavan, Shruti Kharde, Mukta Jade, and Ankita Jadhav, “WIRELESS SPY ROBOT”, IEJRD - International Multidisciplinary Journal, vol. 6, no. ICMRD21, p. 4, Apr. 2021.

References

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