一种改进的E-LEACH路由协议提高无线传感器网络的生存期

M. Abdurohman, Y. Supriadi, F. Z. Fahmi
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引用次数: 11

摘要

提出了一种改进的端到端安全低能量自适应聚类层次(ME-LEACH)算法,以提高无线传感器网络的生存期。能量限制是无线传感器网络的主要制约因素,因此无线传感器网络中的每一个活动都必须有效地利用能量。已经引入了几种协议来调制WSN发送和接收信息的方式。端到端安全低能量自适应聚类层次协议(E-LEACH)是为了解决高能耗散问题而提出的一种分层路由协议算法。探索每个集群上最强大的节点作为簇头(CHs)存在的其他方法是稀疏感知的能效聚类(SEEC)协议和基于能效聚类的路由协议,该协议使用带有模糊逻辑(EERRCUF)方法的增强簇形成技术。但是,E-LEACH方法中的每个CH都将数据直接发送到基站,因此能耗很高。SEEC使用大量的能量来识别最强大的传感器节点,而EERRCUF花费大量的能量来确定超级簇头(SCH)。在提出的方法中,CH将搜索最近的CH并将其作为下一跳。CH链的形成作为通往基站的路径。实验验证了ME-LEACH算法的性能。结果表明,与SEEC和EERRCUF算法相比,ME-LEACH算法具有更高的吞吐量和稳定性,网络寿命比E-LEACH算法提高了35.2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Modified E-LEACH Routing Protocol for Improving the Lifetime of a Wireless Sensor Network
This paper proposes a modified end-to-end secure low energy adaptive clustering hierarchy (ME-LEACH) algorithm for enhancing the lifetime of a wireless sensor network (WSN). Energy limitations are a major constraint in WSNs, hence every activity in a WSN must efficiently utilize energy. Several protocols have been introduced to modulate the way a WSN sends and receives information. The end-to-end secure low energy adaptive clustering hierarchy (E-LEACH) protocol is a hierarchical routing protocol algorithm proposed to solve high-energy dissipation problems. Other methods that explore the presence of the most powerful nodes on each cluster as cluster heads (CHs) are the sparsity-aware energy efficient clustering (SEEC) protocol and an energy efficient clustering-based routing protocol that uses an enhanced cluster formation technique accompanied by the fuzzy logic (EERRCUF) method. However, each CH in the E-LEACH method sends data directly to the base station causing high energy consumption. SEEC uses a lot of energy to identify the most powerful sensor nodes, while EERRCUF spends high amounts of energy to determine the super cluster head (SCH). In the proposed method, a CH will search for the nearest CH and use it as the next hop. The formation of CH chains serves as a path to the base station. Experiments were conducted to determine the performance of the ME-LEACH algorithm. The results show that ME-LEACH has a more stable and higher throughput than SEEC and EERRCUF and has a 35.2% better network lifetime than the E-LEACH algorithm.
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