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A fault-tolerant and distributed capacitated connected dominating set algorithm for wireless sensor networks

机译:无线传感器网络的容错和分布式电容连接的主导集合算法

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摘要

Energy efficiency is one of the major issues in wireless sensor networks (WSNs) that lack a fixed infrastructure and centralized control. In order to prolong the network lifetime, a connected dominating set (CDS) has been widely used as a virtual backbone in WSNs. The sensor nodes in WSNs are prone to failure due to a lack of battery, hardware damage, link failure, or environmental interference. Therefore, designing an energy-efficient and fault-tolerant CDS algorithm is quite vital in WSNs. A non-masking fault tolerance method denoted self-stabilizing tolerates any finite number of transient faults. In this paper, we propose a fault-tolerant distributed algorithm for a minimal capacitated CDS (CapCDS) construction in WSNs. To the best of our knowledge, this is the first distributed self-stabilizing CapCDS algorithm. It makes an illegitimate system legitimate at most (n~2/3 +2n ) moves by using an unfair distributed scheduler where n is the number of nodes. The performance of the algorithm is validated through extensive experimental testbeds and simulations.
机译:能效是无线传感器网络(WSNS)中的主要问题之一,缺乏固定基础设施和集中控制。为了延长网络生命周期,已连接的主导集(CD)已被广泛用作WSN中的虚拟骨干。由于缺少电池,硬件损坏,链路故障或环境干扰,WSN中的传感器节点容易出现故障。因此,设计节能和容错CDS算法在WSN中非常重要。非掩蔽容错方法表示自稳定,容忍任何有限数量的瞬态故障。在本文中,我们提出了一种用于WSNS中最小电容CDS(CAPCDS)构造的容错分布式算法。据我们所知,这是第一个分布式自我稳定的CAPCDS算法。它使非法系统最多(n〜2/3 + 2n)通过使用不公平的分布式调度程序移动,其中n是节点的数量。通过广泛的实验测试平台和模拟验证了算法的性能。

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