Wireless Sensor Network (WSN) and IoT-optimized Heterogeneous Broad Transmission Distance Protocol (HT-BTDP)
Sukhman Ghumman, J Praveena, Sidhant Das, Suhas Ballal, Pranali S. Kshirsagar, M. Gowtham · 2024
Numerous cluster applications connect wireless sensor networks to the internet of things, and one of these steps is energy efficient clustering. Failure to account for clustering or heterogeneity makes evaluating a network’s lifespan a difficult undertaking. Various techniques for energy-efficient clustering have been developed using models of the cluster head selection. Massive effort is required to model WSN-IoT full clustering. Part of the clusters system that is not discussed here is the stability phase and network lifespan. Clustering WSN-IoTs with an emphasis on heterogeneity and then scalability is the major goal of this study. Additionally, the presentation includes the specifics of the live metrics that are used for comparing the energy-efficient clustering methods across different time intervals. Prior to developing our first heterogeneous wide transmission distance protocol (HT-BTDP), we devote most of our attention to the selection of cluster heads. These results prove that the proposed HT-BTDP algorithm increases the stability period and lifespan in all analysed cases relative to SEP and EEHC. From the result, it can be observed that for the same vocabulary size the algorithm is on the higher side than SEP as well as EEHC. Further, in average the stability time is increased by $\mathbf{9 8. 2 4 \%}$ in the effectiveness time. While comparing with SEP, that is HIT, the efficacy is $59 \%$ and while comparing with TLE, that is LIT, the efficacy is $14 \%.84 \%$ when compared to EEHC. Also, to SEP, the average life span is 15 years. This makes it $77 \%$ longer, and compared to EEHC, it is 13.