DESIGN OF IOT-BASED MULTIFUNCTIONAL CAMOUFLAGE MILITARY ROBOT
Abstract & Details
Research Area
Electrical and Electronics Engineering
Keywords
Arduino mega
Metal Detector sensor
Node MCU
LM35
GAS sensor
PIR sensor
Abstract
In the modern era, a significant portion of a country's GDP is allocated to defense expenditures, primarily aimed at implementing both primitive and high-security measures to fortify border security and protect against trespassers. Within this context, defense organizations are increasingly turning to robotics to enhance operational efficiency and minimize human casualties. Among these advancements, Camouflage Robots have emerged as crucial assets, particularly in mitigating losses during disasters and hostile situations.The fundamental concept of Camouflage Robots involves equipping vehicles with advanced camera systems capable of detecting and adapting to surrounding colors and patterns. These robots are adept at stealthily infiltrating enemy territories, gathering vital intelligence through their camera feeds, and relaying this information to command centers, thereby bolstering national defense mechanisms. By leveraging robotics, the overarching goal is to strengthen defense infrastructure while prioritizing the preservation of human lives.To achieve these objectives, this paper proposes a comprehensive system integrating various technologies, including the Arduino Mega microcontroller, metal detectors, and gas sensors. These components empower the robot to execute multifaceted tasks, ranging from reconnaissance missions to search and rescue operations. By harnessing the capabilities of these sensors and controllers, the robot can navigate diverse terrains, identify potential threats, and swiftly respond to emergencies.In essence, the integration of robotics, particularly Camouflage Robots, represents a pivotal advancement in modern defense strategies. By harnessing the power of automation and sensor technologies, nations can enhance their defensive capabilities, mitigate risks, and ultimately safeguard the lives of both military personnel and civilians. This concerted effort towards leveraging robotics underscores a commitment to innovation and adaptability in the face of evolving security challenges.
License
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Dr. Somanath Mishra | Gandhi Institute For technology (GIFT) Autonomous College, bbsr |
| 2 | Sanmaya Sangeet Jena | Gandhi Institute For technology (GIFT) Autonomous College, bbsr |
| 3 | Shubham | Gandhi Institute For technology (GIFT) Autonomous College, bbsr |
| 4 | Sparsh Singh | Gandhi Institute For technology (GIFT) Autonomous College, bbsr |
| 5 | Anshu Kumar | Gandhi Institute For technology (GIFT) Autonomous College, bbsr |
| 6 | Kumar Gaurav | Gandhi Institute For technology (GIFT) Autonomous College, bbsr |
| 7 | Achal Shrivastav | Gandhi Institute For technology (GIFT) Autonomous College, bbsr |
| 8 | Ayush Kumar Gupta | Gandhi Institute For technology (GIFT) Autonomous College, bbsr |
How to Cite
Use the following formats to cite this article in your research.
APA Style
Mishra, Dr. Somanath, Jena, Sanmaya Sangeet, Shubham, Singh, Sparsh, Kumar, Anshu, Gaurav, Kumar, Shrivastav, Achal, & Gupta, Ayush Kumar (2024). DESIGN OF IOT-BASED MULTIFUNCTIONAL CAMOUFLAGE MILITARY ROBOT. International Journal of Advance Research and Innovative Ideas In Education, 10(3), 1592-1598.
MLA Style
Mishra, Dr. Somanath, et al. "DESIGN OF IOT-BASED MULTIFUNCTIONAL CAMOUFLAGE MILITARY ROBOT." International Journal of Advance Research and Innovative Ideas In Education, vol. 10, no. 3, 2024, pp. 1592-1598.
IEEE Style
Dr. Somanath Mishra, Sanmaya Sangeet Jena, Shubham, Sparsh Singh, Anshu Kumar, Kumar Gaurav, Achal Shrivastav, and Ayush Kumar Gupta, "DESIGN OF IOT-BASED MULTIFUNCTIONAL CAMOUFLAGE MILITARY ROBOT," International Journal of Advance Research and Innovative Ideas In Education, vol. 10, no. 3, pp. 1592-1598, 2024.
Vancouver Style
Mishra Dr. Somanath, Jena Sanmaya Sangeet, Shubham, Singh Sparsh, Kumar Anshu, Gaurav Kumar, et al. DESIGN OF IOT-BASED MULTIFUNCTIONAL CAMOUFLAGE MILITARY ROBOT. International Journal of Advance Research and Innovative Ideas In Education. 2024;10(3):1592-1598.
Harvard Style
Mishra, Dr. Somanath, Jena, Sanmaya Sangeet, Shubham, Singh, Sparsh, Kumar, Anshu, Gaurav, Kumar, Shrivastav, Achal, & Gupta, Ayush Kumar (2024) 'DESIGN OF IOT-BASED MULTIFUNCTIONAL CAMOUFLAGE MILITARY ROBOT', International Journal of Advance Research and Innovative Ideas In Education, 10(3), pp. 1592-1598.
Chicago Style
Mishra, Dr. Somanath, et al. "DESIGN OF IOT-BASED MULTIFUNCTIONAL CAMOUFLAGE MILITARY ROBOT." International Journal of Advance Research and Innovative Ideas In Education 10, no. 3 (2024): 1592-1598.
Turabian Style
Mishra, Dr. Somanath, et al. "DESIGN OF IOT-BASED MULTIFUNCTIONAL CAMOUFLAGE MILITARY ROBOT." International Journal of Advance Research and Innovative Ideas In Education 10, no. 3 (2024): 1592-1598.
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