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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >Algorithms for Fault-Tolerant Topology in Heterogeneous Wireless Sensor Networks
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Algorithms for Fault-Tolerant Topology in Heterogeneous Wireless Sensor Networks

机译:异构无线传感器网络中的容错拓扑算法

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摘要

This paper addresses fault-tolerant topology control in a heterogeneous wireless sensor network consisting of several resource-rich supernodes, used for data relaying, and a large number of energy-constrained wireless sensor nodes. We introduce the k-degree Anycast Topology Control (k-ATC) problem with the objective of selecting each sensor''''s transmission range such that each sensor is k-vertex supernode connected and the total power consumed by sensors is minimized. Such topologies are needed for applications that support sensor data reporting even in the event of failures of up to k u00026;#8722; 1 sensor nodes. We propose three solutions for the k-ATC problem: a k-approximation algorithm, a greedy centralized algorithm that minimizes the maximum transmission range between all sensors, and a distributed and localized algorithm that incrementally adjusts sensors'''' transmission range such that the k-vertex supernode connectivity requirement is met. Extended simulation results are presented to verify our approaches.
机译:本文研究了异构无线传感器网络中的容错拓扑控制,该网络由多个资源丰富的超节点(用于数据中继)和大量能量受限的无线传感器节点组成。我们介绍了k度Anycast拓扑控制(k-ATC)问题,目的是选择每个传感器的传输范围,以使每个传感器都连接到k顶点超节点,并最大程度地减少传感器消耗的总功率。对于即使在发生故障时支持传感器数据报告的应用程序,也需要此类拓扑。 1个传感器节点。对于k-ATC问题,我们提出了三种解决方案:一种k逼近算法,一个使所有传感器之间的最大传输距离最小的贪婪集中式算法以及一种增量调整传感器的传输范围以使得满足k-vertex超级节点连接要求。提出了扩展的仿真结果以验证我们的方法。

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