基于模糊逻辑加法的ZigBee网络电源感知路由(PSAR)改进算法

Sri Astuti, R. Munadi, Istikmal
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引用次数: 0

摘要

路由机制是使用电池供电设备优化Zigbee网络性能的众多方法之一。因此,开发了各种路由算法以获得最佳性能。其中一个例子是电源感知路由(PSAR)算法。然而,PSAR算法存在的问题是,由于存在大量的电池供电设备,或者节点位于通信范围之外等原因,并不总是能够从通信路径上重新配置电池供电节点。我们提出了一种改进的PSAR算法,加入了模糊逻辑。这是为了选择最佳的电池供电节点将消息转发给邻居。仿真结果表明,对于整体电池供电节点,PSAR算法比Tree算法平均能耗降低10.5%。此外,由于重新配置,PSAR算法具有更长的生存节点。对于整个电池供电的节点,改进后的PSAR算法的能耗比PSAR算法降低了6.1%。改进后的PSAR算法具有更多的平衡生存节点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modifing Power Source Aware Routing (PSAR) algorithm with fuzzy logic addition in ZigBee network
Routing mechanism is one of the many ways to optimize the performance of Zigbee network that used battery-powered device. Therefore, a variety of routing algorithms are developed to obtain the optimal performance. One of the examples is Power-Source Aware Routing (PSAR) algorithm. However, PSAR algorithm has problem that the reconfiguration of battery powered node from communication path is not always possible to be conducted due to the availability of lots of battery-powered devices, or node located outside the communication range, etc. We proposed the modified PSAR algorithm by adding a fuzzy logic. This was to select the optimal battery powered node to forward the message to their neighbors. The results of the simulation indicate that for overall battery powered node, PSAR algorithm has 10.5 percent smaller energy consumption in average compared to Tree algorithm. In addition as a result of the reconfiguration, PSAR algorithm has longer lifetime node. For overall battery-powered node, the modified PSAR algorithm has 6.1 percent smaller energy consumption compared to PSAR algorithm. The modified PSAR algorithm has also more balance lifetime node.
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