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Interleaved Honeypot-Framing Model with Secure MAC Policies for Wireless Sensor Networks.

Rajasoundaran Soundararajan1, Maheswar Rajagopal2, Akila Muthuramalingam3

  • 1School of Computing Science and Engineering, VIT Bhopal University, Kothri Kalan 466114, India.

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|October 27, 2022
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Summary

This study introduces the Wireless Interleaved Honeypot-Framing Model (WIHFM) to enhance wireless sensor network security. WIHFM uses honeypot frames to detect and defend against intelligent attacks, outperforming existing methods.

Keywords:
Medium Accessattackssecuritywireless honeypotswireless mediumwireless sensor networks

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Area of Science:

  • Computer Science
  • Network Security
  • Wireless Communication

Background:

  • Wireless Medium Access Control (WMAC) protocols require robust security against evolving cyber threats.
  • Existing MAC security policies are vulnerable to intelligent and malicious attacks.
  • Wireless Sensor Networks (WSNs) demand effective intrusion detection and secure data communication.

Purpose of the Study:

  • To propose a novel security model, the Wireless Interleaved Honeypot-Framing Model (WIHFM), for WSNs.
  • To enhance the resilience of MAC protocols against sophisticated channel attackers.
  • To implement distributed honeypot mechanisms for reactive security in WSNs.

Main Methods:

  • Development of the Wireless Interleaved Honeypot-Framing Model (WIHFM).
  • Implementation of distributed honeypot engines and secure hash-based random frame interleaving.
  • Creation of Wireless Interleaved Honeypot Frames (WIHFs) for unpredictable frame sequences.

Main Results:

  • The WIHFM effectively transforms unpredictable frames into legitimate sequences, thwarting channel attackers.
  • Simulation results demonstrate superior performance of WIHFM over SZ-MAC, BASR, and TBNE.
  • Experimental validation shows a 10% to 14% performance improvement compared to existing techniques.

Conclusions:

  • The proposed WIHFM offers resilient security standards and neighbor-based intrusion alerts for MAC frames.
  • WIHFM provides an effective wireless attack-trapping solution in dynamic WSNs.
  • The novel wireless honeypot methodology addresses challenges in distributed honeypot management and network backbone dynamics.