首页> 外文会议>2014 IEEE 28th International Conference on Advanced Information Networking and Applications Workshops >On the Impact of Network Topology on Wireless Sensor Networks Performances: Illustration with Geographic Routing
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On the Impact of Network Topology on Wireless Sensor Networks Performances: Illustration with Geographic Routing

机译:网络拓扑对无线传感器网络性能的影响:带有地理路由的插图

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Wireless Sensor Networks (WSN) are composed of constrained devices and deployed in unattended and hostile environments. Most papers presenting solutions for WSN evaluate their work over random topologies to highlight some of their "good" performances. They rarely study these behaviors over more than one topology. Yet, the topology used can greatly impact the routing performances. This is what we demonstrate in this paper. We present a study of the impact of the network topology on algorithm performance in WSNs and illustrate it with the geographic routing. Geographic routing relies on node coordinates to route data packets from source to destination. We measure the impact of different network topologies from realistic ones to regular and very popular ones through extensive simulation and experimentation campaigns. We show that different topologies can lead to a difference of up to 25% on delivery ratio and average route length and more than 100% on energy costs.
机译:无线传感器网络(WSN)由受约束的设备组成,并部署在无人值守和恶劣的环境中。提出WSN解决方案的大多数论文都在随机拓扑上评估其工作,以突出其“良好”性能。他们很少在多个拓扑上研究这些行为。但是,使用的拓扑会极大地影响路由性能。这就是我们在本文中演示的内容。我们对WSN中的网络拓扑对算法性能的影响进行了研究,并通过地理路由对其进行了说明。地理路由依赖于节点坐标将数据包从源路由到目标。我们通过广泛的模拟和实验活动来衡量从实际的网络拓扑到常规的非常流行的网络拓扑的影响。我们表明,不同的拓扑结构可能导致交付率和平均路线长度的差异高达25%,而能源成本的差异却高达100%。

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