COLLABORATIVE EDGE-FOG SYSTEM FOR REAL-TIME ANOMALY DETECTION AND COMMUNICATION EFFICIENCY IN UNDERWATER IOT

Authors

  • Durga Praveen Devi Author
  • Naga Sushma Allur Author
  • Koteswararao Dondapati Author
  • Himabindu Chetlapalli Author
  • Sharadha Kodad Author
  • Thinagaran Perumal Author

Keywords:

Edge-fog computing, anomaly detection, underwater IoT, communication efficiency, real-time, scalability, energy efficiency, resource management, latency reduction, distributed processing

Abstract

Background: In the underwater IoT systems, environmental constraints like bandwidth limitations and highlatency raise issues with real-time anomaly detection and communication. Data processing efficiently with timely anomaly detection is an essential step in enhancing system performance in underwater environmentsObjectives: This work proposes the design of a collaborative edge-fog system for underwater IoT networks that enhance the efficiency of real-time anomaly detection, communication, and data
processing while optimizing response time and resource management. Methods: The distributed anomaly detection using edge and fog computing, offloading noncritical tasks in case of fog nodes while still maintaining real-time detection capabilities at the edge, will
reduce latency and enhance communication efficiency .Empirical Results: The framework can reduce detection latency to 25%, enhance communication efficiency up to 30%, and performs better compared to the traditional centralized systems while being assured of a real-time performance in underwater IoT applications. Conclusion: The collaborative edge-fog system would significantly improve the anomaly detection of underwater IoT systems and communication efficiency. Scalability and energy- efficient solutions are obtained from this design. Future development can be considered in terms of integrating advanced algorithms for anomaly detection and further optimized resource management..

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Published

15-07-2026

How to Cite

COLLABORATIVE EDGE-FOG SYSTEM FOR REAL-TIME ANOMALY DETECTION AND COMMUNICATION EFFICIENCY IN UNDERWATER IOT. (2026). International Journal of Mechanical Engineering Research and Technology , 18(3), 1-23. https://ijmert.com/index.php/ijmert/article/view/282