SECURITY GUARD ROBOT

Authors

  • Madhukar Reddy Nimmala, V Rajesh, A Sandeep Kumar, T Ranjith Kumar, E Lukesh Author

DOI:

https://doi.org/10.64751/yaq47j63

Abstract

The Security Guard Robot project focuses on the design and development of an autonomous robotic system for monitoring and protecting residential, industrial, commercial, and restricted areas. The robot is designed to reduce the dependency on continuous human surveillance and provide an efficient solution for security monitoring. The proposed robot consists of components such as a microcontroller, motors, motor driver, camera, ultrasonic sensors, motion sensors, buzzer, and wireless communication module. The sensors are used to detect obstacles, movement, and unusual activities within the monitored area. The camera can capture live or recorded video for visual monitoring and identification of potential security threats. The robot is designed to move through predefined areas and continuously monitor its surroundings. When suspicious movement or an unexpected obstacle is detected, the system can generate an alert through a buzzer, mobile application, or wireless communication system. Remote monitoring can also allow users to observe the surroundings and control the robot when required. The system combines robotics, embedded systems, sensors, automation, and wireless communication to provide a flexible security solution. Obstacle detection and automatic navigation help the robot move safely while monitoring the designated environment. Overall, the Security Guard Robot provides an automated approach to surveillance and security monitoring. The system can be further enhanced by integrating facial recognition, night vision, GPS tracking, IoT connectivity, artificial intelligence, voice communication, and advanced threat detection to improve its reliability and security capabilities.

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Published

2026-09-05

How to Cite

Madhukar Reddy Nimmala, V Rajesh, A Sandeep Kumar, T Ranjith Kumar, E Lukesh. (2026). SECURITY GUARD ROBOT. International Journal of AI Electrical Civil and Mechanical Engineering, 2(3), 535-543. https://doi.org/10.64751/yaq47j63