Energy-Aware Threshold Sensitive Stable Election Protocol (EATSEP) for Wireless Sensor Networks

B. Sarkar, M. G. Rashed, D. Das, R. Yasmin
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引用次数: 1

Abstract

In most of the traditional cluster-based hierarchical routing protocols, the cluster head (CH) selection is made on a random basis. As a result, some unlucky sensor nodes (SNs) become dead quickly; thereby, network lifetime reduces drastically. To overcome this problem, in this paper, a new cluster-based routing protocol- Energy-Aware Threshold Sensitive Stable Election Protocol (EATSEP) is presented for wireless sensor networks (WSNs). In the EATSEP protocol, the CH selection is an optimum process where the initial and residual energy of each SNs are considered within a heterogeneous SNs energy environment. Additionally, our proposed EATSEP protocol has managed to reduce long-distance transmission by routing data among CHs to the base station. In our present study, we have simulated the EATSEP protocol through MATLAB to compare its performance with other popular protocols under some well-known performance metrics. The experimental results indicate that the network stability of the EATSEP protocol improves by 80.81, 66.41, and 27.06 %, respectively, compared to the low-energy adaptive clustering hierarchy (LEACH), Stable Election Protocol (SEP), and Threshold Sensitive SEP under a particular setting. In terms of energy consumption and network throughput, the EATSEP is also superior to other protocols.
无线传感器网络能量感知阈值敏感稳定选举协议(EATSEP)
在大多数传统的基于集群的分层路由协议中,簇头(CH)的选择是随机的。因此,一些不幸的传感器节点(SNs)很快就会死亡;因此,网络生命周期大大缩短。为了克服这一问题,本文提出了一种新的基于集群的无线传感器网络路由协议——能量感知阈值敏感稳定选举协议(EATSEP)。在EATSEP协议中,CH选择是在异构SNs能量环境中考虑每个SNs的初始能量和剩余能量的最优过程。此外,我们提出的EATSEP协议已经设法通过在CHs之间路由数据到基站来减少长距离传输。在我们目前的研究中,我们通过MATLAB模拟了EATSEP协议,以比较其在一些众所周知的性能指标下与其他流行协议的性能。实验结果表明,在特定设置下,与低能量自适应聚类结构(LEACH)、稳定选举协议(SEP)和阈值敏感协议(SEP)相比,EATSEP协议的网络稳定性分别提高了80.81%、66.41%和27.06%。在能耗和网络吞吐量方面,EATSEP也优于其他协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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