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Simple Random Sampling-Based Probe Station Selection for Fault Detection in Wireless Sensor Networks

机译:基于简单随机采样的无线传感器网络故障探测探针台选择

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摘要

Fault detection for wireless sensor networks (WSNs) has been studied intensively in recent years. Most existing works statically choose the manager nodes as probe stations and probe the network at a fixed frequency. This straightforward solution leads however to several deficiencies. Firstly, by only assigning the fault detection task to the manager node the whole network is out of balance, and this quickly overloads the already heavily burdened manager node, which in turn ultimately shortens the lifetime of the whole network. Secondly, probing with a fixed frequency often generates too much useless network traffic, which results in a waste of the limited network energy. Thirdly, the traditional algorithm for choosing a probing node is too complicated to be used in energy-critical wireless sensor networks. In this paper, we study the distribution characters of the fault nodes in wireless sensor networks, validate the Pareto principle that a small number of clusters contain most of the faults. We then present a Simple Random Sampling-based algorithm to dynamic choose sensor nodes as probe stations. A dynamic adjusting rule for probing frequency is also proposed to reduce the number of useless probing packets. The simulation experiments demonstrate that the algorithm and adjusting rule we present can effectively prolong the lifetime of a wireless sensor network without decreasing the fault detected rate.
机译:近年来,对无线传感器网络(WSN)的故障检测进行了深入研究。大多数现有的作品静态地选择管理器节点作为探测站,并以固定的频率探测网络。然而,这种简单的解决方案导致一些缺陷。首先,仅通过将故障检测任务分配给管理器节点,整个网络就失去了平衡,这很快使已经沉重的管理器节点过载,从而最终缩短了整个网络的寿命。其次,以固定频率进行探测通常会产生太多无用的网络流量,这会浪费有限的网络能量。第三,用于选择探测节点的传统算法过于复杂,无法在对能量至关重要的无线传感器网络中使用。在本文中,我们研究了无线传感器网络中故障节点的分布特征,验证了帕累托原理,即少数簇包含大部分故障。然后,我们提出一种基于简单随机采样的算法,以动态选择传感器节点作为探测站。还提出了一种用于探测频率的动态调整规则,以减少无用的探测包的数量。仿真实验表明,本文提出的算法和调整规则可以有效地延长无线传感器网络的寿命,而不会降低故障检测率。

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