Work place: Department of ECE, SRM University AP, Guntur, 522502, India
E-mail: anirban.g@srmap.edu.in
Website: https://orcid.org/0000-0003-1943-9710
Research Interests:
Biography
Anirban Ghosh received his bachelor’s degree from Jadavpur University, Kolkata, India in 2010, his master’s degree from the National Institute of Technology, Durgapur, India in 2012, and Ph.D. from North Dakota State University, Fargo, USA in 2018. He has served as an Assistant Professor at KIIT University, Bhubaneswar, India in 2012; as a Wireless System Engineer at Clifton Technologies LLC, USA in 2018, and is currently working as an Associate Professor at SRM University-AP, Andhra Pradesh, India. While working at Clifton Technologies LLC, he was a part of the team that deployed the patented 220 MHz IoT Network. His current research interests include secrecy capacity determination using Information Theory, various IoT applications and solutions, channel measurement and modelling, and biomedical image processing.
By Raja Manjula Tejodbhav Koduru Kandimalla Sai Yasheswini Tumala Meghana Kamineni Shasank Anirban Ghosh Anuj Deshpande Sibendu Samanta
DOI: https://doi.org/10.5815/ijwmt.2026.05.21, Pub. Date: 8 Oct. 2026
This research aims to understand the impact of the network area and shape on the performance metrics used in evaluating the random walk-based source location privacy (SLP) techniques developed for WSNs. In this context, the impact of circular and square network models for different network areas, node densities, and radio ranges of sensor nodes on the performance of three popular SLP techniques is investigated. The effectiveness is assessed using performance measures from the body of available literature. It has been found that square deployment performs better for sector-based SLP protocols when network area, node density, and node radio range are held constant. However, circular networks perform better for the same protocol when the radio range is varied beyond a certain threshold while holding all other parameters constant. The trend, however, changes under comparable network settings for the non-sector-based random walk protocols considered in the current work. The results reveal a strong link between deployment geometry and routing logic, demonstrating that sector-based SLP protocols are primarily geometry-sensitive, whereas non-sector-based protocols are more sensitive to radio-range variations. A radio-range threshold of approximately 100 m was identified beyond which privacy gains saturated and energy costs increased. These findings provide practical design guidelines for geometry-aware deployment of privacy-preserving WSNs. However, the conclusions are limited to simulation-based evaluation of three random walk-based SLP protocols in circular and square network topologies, and further validation in irregular and real-world deployments is required.
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