Self Asserted Power Optimization Protocol for Heterogeneous WSN

M. S. Muthukkumar, S. Diwakaran, C. M. A. Kumar
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Abstract

The presented methodology is an energy-optimized data routing mechanism for wireless sensor networks (WSNs) that emphasizes energy conservation while providing reliable data delivery to the base station (BS). Hierarchical and cluster-based protocol consists of one cluster head (CH) node, two deputy CH nodes, and extra sensor nodes per cluster. The introduction of the concept of a CH panel reduces the time and energy required for re-clustering. The BS selects a group of likely CH nodes and constructs the CH panel with the objective of attaining a defined BS throughput level. The transfer of data between CH nodes and the BS might occur directly or via multi-hop pathways. During periods of data congestion, alternative channels are sometimes employed to increase the network dependability of data transmission. Simulation findings suggest that the proposed protocol improves the energy efficiency, data throughput, and lifetime of a cluster's nodes.
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异构WSN自断言功率优化协议
提出的方法是一种能量优化的无线传感器网络(WSNs)数据路由机制,它在向基站(BS)提供可靠数据传输的同时强调节能。分层和基于集群的协议由一个簇头(CH)节点、两个副CH节点和每个集群的额外传感器节点组成。CH面板概念的引入减少了重新集群所需的时间和精力。BS选择一组可能的CH节点并构建CH面板,目标是达到定义的BS吞吐量水平。CH节点和BS之间的数据传输可以直接进行,也可以通过多跳路径进行。在数据拥塞期间,有时采用替代通道来增加数据传输的网络可靠性。仿真结果表明,该协议提高了集群节点的能量效率、数据吞吐量和生命周期。
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