A multipath routing protocol for secure energy efficient communication in Wireless Sensor Networks

Journal article


Biswas, Kamanashis, Muthukkumarasamy, Vallipuram, Chowdhury, Mohammad Jabed Morshed, Wu, Xin-Wen and Singh, Kalvinder. (2023). A multipath routing protocol for secure energy efficient communication in Wireless Sensor Networks. Computer Networks. 232, p. Article 109842. https://doi.org/10.1016/j.comnet.2023.109842
AuthorsBiswas, Kamanashis, Muthukkumarasamy, Vallipuram, Chowdhury, Mohammad Jabed Morshed, Wu, Xin-Wen and Singh, Kalvinder
Abstract

A Wireless Sensor Network (WSN) is comprised of a number of sensor nodes (SNs) that are randomly placed in an open, harsh environment for many applications. Due to the resource-constrained nature of SNs and hostile deployment environments, energy efficiency and security are considered two key factors in designing WSN routing protocols. This paper proposes an Energy Efficient Secure Multipath (EESM) routing protocol to securely construct efficient routes and transmit data packets between SNs and the base station (BS). EESM achieves energy efficiency through minimal task allocation among SNs whereas all computation-intensive tasks such as network information collection, routing table generation, and network maintenance are performed by the BS. The proposed protocol incorporates lightweight security mechanisms including a one-way hash chain, message authentication code, encryption, and clique-based coordinator selection and monitoring schemes to defend against numerous security attacks. Simulation results show that EESM can successfully detect and protect the network against various security attacks such as replay attacks, sybil attacks, sinkhole attacks, spoofing attacks, compromised node attacks, and so on. In terms of energy efficiency, the proposed protocol achieves an up to 37% increase in network lifetime and a 6% increase in throughput over Secure and Energy Efficient Multipath (SEEM) routing, Secure and Reliable Multipath Routing (SRMR), and Reliable and Multipath Encounter Routing (RMER) protocols. The paper implements the protocol in a real environment using Arduino motes to analyze security overheads and network setup time.

Keywordsmultipath routing; network lifetime; energy efficiency; security; throughput; Wireless Sensor Networks
Year2023
JournalComputer Networks
Journal citation232, p. Article 109842
PublisherElsevier B.V.
ISSN1872-7069
Digital Object Identifier (DOI)https://doi.org/10.1016/j.comnet.2023.109842
Page range1-14
Publisher's version
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All rights reserved
File Access Level
Controlled
Output statusPublished
Publication dates
Online29 May 2023
Publication process dates
Accepted22 May 2023
Deposited09 Jun 2023
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