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Wireless Sensor Networks Fault-Tolerance Based on Graph Domination with Parallel Scatter Search

机译:基于图形控制和并行散点搜索的无线传感器网络容错

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摘要

In wireless sensor/ad hoc networks, all wireless nodes frequently flood the network channel by transmitting control messages causing “broadcast storm problem”. Thus, inspired by the physical backbone in wired networks, a Virtual Backbone (VB) in wireless sensor/ad hoc networks can help achieve efficient broadcasting. A well-known and well-researched approach for constructing virtual backbone is solving the Connected Dominating Set (CDS) problem. Furthermore, minimizing the size of the CDS is a significant research issue. We propose a new parallel scatter search algorithm with elite and featured cores for constructing a wireless sensor/ad hoc network virtual backbones based on finding minimum connected dominating sets of wireless nodes. Also, we addressed the problem of VB nodeodes failure by either deploying a previously computed VBs provided by the main pSSEF algorithm that does not contain the failed nodeodes, or by using our proposed FT-pSSEF algorithm repairing the broken VBs. Finally, as nodes in a VB incur extra load of communication and computation, this leads to faster power consumption compared to other nodes in the network. Consequently, we propose the virtual backbone scheduling algorithm SC-pSSEF which aims to find multiple VBs using the VBs provided by the pSSEF algorithm and switch between them periodically to prolong the network life time.
机译:在无线传感器/ ad hoc网络中,所有无线节点都通过发送导致“广播风暴问题”的控制消息来频繁泛洪网络信道。因此,受有线网络中物理骨干网的启发,无线传感器/ ad hoc网络中的虚拟骨干网(VB)可以帮助实现有效的广播。构建虚拟骨干网的一种众所周知且经过研究的方法正在解决连接支配集(CDS)问题。此外,最小化CDS的尺寸是一个重要的研究问题。我们提出了一种新的具有精​​英和特色核心的并行散点搜索算法,该算法基于发现无线节点的最小连接支配集来构建无线传感器/ ad hoc网络虚拟主干。此外,我们通过部署先前由不包含故障节点的主要pSSEF算法提供的预先计算的VB或通过使用我们提出的FT-pSSEF算法修复损坏的VB来解决VB节点故障的问题。最后,由于VB中的节点会产生额外的通信和计算负担,因此与网络中的其他节点相比,这会导致更快的功耗。因此,我们提出了虚拟骨干调度算法SC-pSSEF,其目的是使用pSSEF算法提供的VB查找多个VB,并定期在它们之间切换以延长网络寿命。

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