Remotely Controlled Armed Surveillance Rover

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K.G Venkata Krishna
Satyanarayana
Uma Mahesh
A.D.S. Kalyan
Vijaya Kumar

Abstract

A remotely operated ground vehicle was designed and developed for use in counter terrorism and counter-insurgency operations by the Indian Army. The Rover can traverse difficult terrain, extreme slopes, inspect suspicious objects (e.g. improvised explosive devices) with a robotic weapon with a camera(even when hidden under a bridge), and give visual feedback to an operator away at a safe distance of certain range. It can be operated using mobile and can be self-triggered when a command is given. Militaries are now equipped with various types of rovers. Rover for assistance and spy purposes are developing. This project represents an application of Rover in the military. This rover is 4-wheeled developed on a rocker-bogie mechanism. According torecent Rover developments, rovers with rocker-bogie mechanismscan glide on rough surfaces, sand, and loose soil easily. Thedegree of freedom for the rover is 4 with the ability to rotate 360°.This rover is equipped with frequency hopping which makes it ananti-hack device. This project is useful for attacking the opponentsin the war without losing our army officers. So by using this project we can do war without losing human life on our side.

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How to Cite
Remotely Controlled Armed Surveillance Rover. (2024). International Journal of Innovative Science and Modern Engineering (IJISME), 12(10), 1-4. https://doi.org/10.35940/ijisme.F3758.12101024
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How to Cite

Remotely Controlled Armed Surveillance Rover. (2024). International Journal of Innovative Science and Modern Engineering (IJISME), 12(10), 1-4. https://doi.org/10.35940/ijisme.F3758.12101024

References

Sharkey, N, “Automated Killers and the Computing Profession” ,. ; Univ. of Sheffield, Sheffield., April 2012.

Green, W.E, “An aerial robot prototype for situational awareness in closed quarters”, August 2011

Zuberi. O, “Human Performance Issues and User Interface Design for Tele-operated Robots”,; May 2012

Carafano, J., & Gudgel, A, “The Pentagon’s robots: Arming the future”, 2007.

http://en.rian.ru/military_news/20130730/182491171/Russia-DevelopsSilent-Robotic-Armored-Vehicle.html

http://www.shephard.co.uk/news/uvonline/uv-europe-2011-unmannedsnatch-a-work-in-progress/9271/

https://www.researchgate.net/publication/313403109_Design_of_Rocker_Bogie_Mechanism

https://www.arduino.cc/en/software

https://components101.com/microcontrollers/atmega328p-pinout-features-datasheet

Pugazhenthi, N., Lakshmi, K. V., Preneeth, V., & Shrivani, K. (2019). Design and Fabrication of Robot for Surveillance using Arduino. In International Journal of Innovative Technology and Exploring Engineering (Vol. 8, Issue 10, pp. 3691–3693). https://doi.org/10.35940/ijitee.j9654.0881019

D, K., babu G, N., S B, N., K, G., & I, L. (2019). Design and Development of Wireless Controlled Surveillance Robot using Iot. In International Journal of Recent Technology and Engineering (IJRTE) (Vol. 8, Issue 3, pp. 5537–5539). https://doi.org/10.35940/ijrte.c5475.098319

K, S., Batra, J., Mayuree, M., Joseph, G. T., & Singh, S. K. (2020). Safety Assistance Visual Surveillance Robot. In International Journal of Engineering and Advanced Technology (Vol. 9, Issue 5, pp. 752–756). https://doi.org/10.35940/ijeat.e9838.069520

Singh, S., Ghatnekar, V., & Katti, S. (2024). Long Horizon Episodic Decision Making for Cognitively Inspired Robots. In Indian Journal of Artificial Intelligence and Neural Networking (Vol. 4, Issue 2, pp. 1–7). https://doi.org/10.54105/ijainn.b1082.04020224

Chitroda, M., & Patle, Dr. B. K. (2023). A Review on Technologies in Robotic Gripper. In International Journal of Advanced Engineering and Nano Technology (Vol. 10, Issue 5, pp. 1–5). https://doi.org/10.35940/ijaent.c7232.0511523

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