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Performance Metric Analysis for a Jamming Detection Mechanism under Collaborative and Cooperative Schemes in

Alejandro Cortés-Leal1, Carolina Del-Valle-Soto1, Cesar Cardenas2

  • 1Facultad de Ingeniería, Universidad Panamericana, Álvaro del Portillo 49, Zapopan 45010, Jalisco, Mexico.

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Summary

In Industry 4.0, collaborative Wireless Sensor Network (WSN) schemes enhance security against jamming, reducing costs. Cooperative schemes are efficient during normal operations, but collaborative ones offer better protection and aid jamming mitigation.

Keywords:
Industrial Internet of Things (IIoT)Industrial Wireless Sensor Networkscooperative communicationjammingsecurity for IIoT

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Area of Science:

  • Network Security
  • Wireless Sensor Networks (WSN)
  • Industry 4.0

Background:

  • Industry 4.0 technologies like IoT and WSN necessitate new network security approaches.
  • Reducing operational and maintenance costs, particularly energy consumption at the physical layer, is crucial.
  • Jamming poses a significant threat to WSN performance and reliability.

Purpose of the Study:

  • To compare the efficiency and security of cooperative versus collaborative WSN schemes.
  • To evaluate the impact of these schemes on performance metrics, especially energy consumption.
  • To develop a real-time jamming detection algorithm for WSNs.

Main Methods:

  • Simulations and experimental validation of WSN schemes.
  • Analysis of jamming aggressor characteristics and damage.
  • Evaluation of WSN natural immunity based on node density and network configuration.
  • Assessment of performance metrics, focusing on energy consumption during transmission.

Main Results:

  • Cooperative schemes are more efficient under normal WSN operating conditions.
  • Collaborative schemes provide enhanced protection against jamming attacks.
  • Collaborative schemes improve network safety and reduce operational costs, supporting jamming mitigation.

Conclusions:

  • Collaborative WSN configurations offer superior security against jamming compared to cooperative ones.
  • The study provides a foundation for jamming mitigation strategies in WSNs.
  • A real-time jamming detection algorithm is presented, enhancing WSN resilience.