Energy-efficient routing protocol for wireless sensor networks based on progressive and concentric clusters

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Abstract

Smart parking is common in contemporary cities. These smart parking lots are outfitted mostly with wireless sensor networks (WSNs), which are used to detect, monitor, and collect data on the availability status of all existing parking spaces in a given area. Sensors make up WSN, which may gather, process, and transmit informations to the sink. However, the power and communication limitations of the sensors have an effect on the performance and quality of the WSNs. The decrease in the battery and the energy of the nodes causes a decrease in the life of the nodes and also of the entire WSN network. In this article, we present a routing protocol that implements an efficient and robust algorithm allowing the creation of clusters so that the base station can receive data from the entire WSN network. This protocol adopts a reliable and efficient algorithm allowing to minimize the energy dissipation of the sensors and to increase the lifetime of the WSN. In comparison to alternative parking lot management protocols already in use, the simulation results of the proposed protocol are effective and robust in terms of power consumption, data transmission reliability, and WSN network longevity.

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APA

Hilmani, A., Koundi, M., Sabri, Y., & Maizate, A. (2023). Energy-efficient routing protocol for wireless sensor networks based on progressive and concentric clusters. International Journal of Reconfigurable and Embedded Systems, 12(3), 488–495. https://doi.org/10.11591/ijres.v12.i3.pp488-495

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