Spanning tree based topology configuration for multiple-sink Wireless Sensor Networks

Jae-Woo Kim, Sungchang Lee
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引用次数: 11

Abstract

Wireless Sensor Networks (WSNs) collect data (e.g. temperature, moving, humidity) from several energy-constrained sensor nodes and relay it to a single sink node. Therefore, the energy resource of the sensor nodes should be managed efficiently to prolong network lifetime. A single sink node topology is simple to implement and most of the researches assume a single sink node, but, as the number of sensor node increases, it has disadvantages to cope with some problems. For example, unexpected situations such as node failure or irregular power consumption in bottleneck can cause network partitions and energy-hole problems. In this paper, we assume a multiple-sink network, and propose a topology configuration scheme that automatically reconfigure in case of node failures. The performance of the proposed tree configuration scheme is evaluated by simulations.
基于生成树的多汇聚无线传感器网络拓扑配置
无线传感器网络(wsn)从几个能量受限的传感器节点收集数据(例如温度、移动、湿度),并将其中继到单个汇聚节点。因此,必须对传感器节点的能量资源进行有效的管理,以延长网络的生命周期。单汇聚节点拓扑结构实现简单,大多数研究都假设单个汇聚节点,但随着传感器节点数量的增加,它在处理一些问题时存在不足。例如,节点故障或瓶颈中不规律的功耗等意外情况可能导致网络分区和能量洞问题。在本文中,我们假设了一个多汇聚网络,并提出了一种拓扑配置方案,该方案可以在节点故障时自动重新配置。通过仿真对所提出的树形配置方案的性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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