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A robust relay node placement heuristic for structurally damaged wireless sensor networks

机译:针对结构受损的无线传感器网络的鲁棒中继节点放置启发法

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Wireless sensor networks (WSN) can increase the efficiency of many real-life applications through the collaboration of thousands of miniaturized sensors which can be deployed unattended in inhospitable environments. Due to the harsh surroundings and violent nature of the applications, the network sometimes suffers a large scale damage that involves many nodes and would thus create multiple disjoint partitions. This paper investigates a strategy for recovering from such damage through the placement of relay nodes and promotes a novel approach. The proposed approach opts to re-establish connectivity using the least number of relays while ensuring certain quality in the formed topology. Unlike contemporary schemes that form a minimum spanning tree among the isolated segments, the proposed approach establishes a topology that resembles a spider web, for which the segments are situated at the perimeter. Such a topology not only exhibits stronger connectivity than a minimum spanning tree but also achieves better sensor coverage and enables balanced distribution of traffic load among the employed relays. The simulation results demonstrate the effectiveness of the proposed recovery algorithm.
机译:通过数千个小型传感器的协作,无线传感器网络(WSN)可以提高许多现实应用的效率,这些传感器可以无人值守地部署在恶劣的环境中。由于应用程序的恶劣环境和暴力性质,网络有时会遭受大规模破坏,涉及许多节点,因此会创建多个不连续的分区。本文研究了一种通过放置中继节点来从此类损坏中恢复的策略,并提出了一种新颖的方法。所提出的方法选择使用最少数量的中继来重新建立连接,同时确保所形成拓扑中的某些质量。与在孤立的网段之间形成最小生成树的现代方案不同,所提出的方法建立了一种类似于蜘蛛网的拓扑,网段位于外围。这种拓扑不仅比最小生成树具有更强的连通性,而且还可以实现更好的传感器覆盖范围,并可以在所使用的中继之间实现流量负载的均衡分配。仿真结果证明了该算法的有效性。

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