AD-ZRP:基于蚁群的动态无线传感器网络路由算法

Alexandre Massayuki Okazaki, A. A. Fröhlich
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引用次数: 22

摘要

本文介绍了基于蚁群的动态区域路由协议(AD-ZRP),这是一种用于无线传感器网络(WSNs)的自配置响应路由协议。我们的方法基于HOPNET,一种基于蚁群优化(ACO)和区域路由协议(ZRP)的多跳自配置混合路由协议,用于移动自组织网络(manet)。无线传感器网络路由协议的设计存在诸多挑战,而拓扑变化是影响无线传感器网络生存期的一个因素。由于路由协议的鲁棒性,动态拓扑的处理变得不那么困难。然而,在资源可用性方面,wsn往往比manet更严格,因此AD-ZRP设计必须考虑几个限制,包括能耗、处理能力、内存和带宽。AD-ZRP也由ZRP组成,但它基于动态区域,与蚁群算法(ACO)共同作用,使我们能够处理wsn的限制,并通过信息素改进路由发现和路由维护。我们已经将我们的算法与原始的HOPNET进行了评估和比较,并在动态拓扑环境下的数据传输比、路由开销和拥塞避免方面获得了更好的结果。
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AD-ZRP: Ant-based routing algorithm for dynamic wireless sensor networks
In this paper, we introduce Ant-based Dynamic Zone Routing Protocol (AD-ZRP), a self-configuring reactive routing protocol for Wireless Sensor Networks (WSNs). Our approach is based on HOPNET, a multi-hop and self-configuring hybrid routing protocol based on Ant Colony Optimization (ACO) and Zone Routing Protocol (ZRP) for Mobile Ad Hoc Networks (MANETs). There are many challenges in designing routing protocols for WSNs, and topology change is a factor that affects the network lifetime of WSNs. And with the robustness of routing protocols for MANETs, dealing with dynamic topologies becomes a less arduous task. However, WSNs tend to be more stringent than MANETs in respect to resource availability, then the AD-ZRP design must consider several restrictions including energy consumption, processing power, memory, and bandwidth. AD-ZRP also consists of ZRP, but it is based on dynamic zones which, acting together with ACO, allows us to deal with the restrictions of WSNs and yet improve the route discovery and the route maintenance through pheromone. We have evaluated and compared our algorithm to the original HOPNET and obtained better results in terms of data delivery ratio, routing overhead, and congestion avoidance for environments of dynamic topology.
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