自组网无线传感器网络的低能量聚类自适应协议

N. Murad, René Cassin
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引用次数: 6

摘要

无线传感器网络的能量耗散是一个活跃的研究领域。能量消耗与网络拓扑结构和路由协议有关。因此,提出了选择继电器的两个标准。根据一组潜在节点的能量高于平均阈值能量的水平,从一组潜在节点中线性或随机选择成为继电器。这些标准改进了节点通信的组织和网络的生命周期。介绍了自组织一跳低能聚类自适应的准则和协议。SOORLECA是为环境和军事监测而设计的,每个节点都有精确的必要措施。在Sink Node (SN)上不需要平均数据或平滑数据技术。模拟100个节点/ 100m2的网络随机拓扑,对比节点直接传输到SN、路由路径短和静态集群协议的性能。网络的生存期和耗散能量是我们衡量无线传感器网络性能的标准。结果表明,在50%的节点死亡后,SOORLECA ACMET1以61%的能量耗散,将网络的寿命提高了2倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low energy clustering adaptation protocol for an adhoc wireless sensor network
Energy dissipation in a Wireless Sensor Network is an active research field. Energy dissipation is related to the network topology and protocol used to route data. So, two criteria are proposed to elect a relay. A linear or a random choice from a set of potential nodes to become a relay based on their energy level above a mean threshold energy. These criteria improve the organization of the node communications and the lifetime of the network. The criteria and the protocol called the Self Organization One Hop Low Energy Clustering Adaptation (SOORLECA) are explained. The SOORLECA is designed for environmental and military monitoring with precise requisite measures at each node. No mean data or smoothing data technique is required at the Sink Node (SN). Random topology of the network for 100 nodes over 100m2 are simulated to show the protocol performances compared to direct transmission of the node to the SN, short routing path and static clustering protocols. The lifetime and the dissipated energy of the network are our criteria to measure the performance of the WSN. It is shown that the SOORLECA ACMET1 improves 2x the lifetime of network with 61% dissipated energy after 50% of nodes have dead.
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