Vol. 13 (11) pp. 01-04 DOI: 10.21474/IJAR01/22200

HOLLOW MAGNETIC NANOCARRIER-BASED MICROROBOT SWARMS FOR DEFENCE APPLICATIONS

  • Assistant Professor, Dept. of ECE, Pragati Engineering College (A), Surampalem, Kakinada, Andhra Pradesh, India.
  • UG Student, Dept. of ECE, Pragati Engineering College (A), Surampalem, Kakinada, Andhra Pradesh, India.
40 Downloads 85 Views
Crossref

Abstract

Recent advances in swarm robotics and nanomaterials have enabled the development of intelligent microrobotic systems with potential applications extending beyond biomedical domains. This work presents a novel approach employing hollow magnetic nanocarrier-based microrobot swarms designed for defense-oriented operations such as surveillance, targeted neutralization, and environmental sensing in hazardous zones.The proposed system integrates magnetically responsive hollow nanocarriers with high surface area to volume ratios, enabling multifunctional payload encapsulation and remote field-driven actuation.A collective control strategy based on magnetic field modulation and swarm intelligence algorithms is employed to coordinate large-scale microrobot behaviors, including dynamic reconfiguration, obstacle avoidance, and cooperative task execution. Simulation and experimental analyses demonstrate the swarm s ability to self-organize, navigate complex terrains, and perform distributed sensing with high robustness and fault tolerance. The hollow architecture further allows adaptive payload delivery, such as the release of neutralizing agents or signal beacons, enhancing tactical versatility. The results highlight the feasibility of employing magnetic nanocarrier-based microrobot swarms as a next-generation platform for autonomous micro-scale defense systems, offering scalability, resilience, and precision in dynamic operational environments.

Keywords

How to Cite This Article

Viranya Gunnada, Divya Akhil Subhash Arji, Satish Kurra, Veerendra Kesarapu, Renuka Padmavathi Devi Veerathi and Uma Divya Sri Siddireddy (2025); HOLLOW MAGNETIC NANOCARRIER-BASED MICROROBOT SWARMS FOR DEFENCE APPLICATIONS, International Journal of Advanced Research (IJAR), 13 (11), 01-04, ISSN 2320-5407. DOI: https://doi.org/10.21474/IJAR01/22200

Corresponding Author

Viranya Gunnada
Electronics and Communication Engineering Pragati Engineering College (Jntuk) Surampalem,India.
India

Article Analytics

Similar Articles