基于CDS的无线传感器网络可靠拓扑控制

Enan A. Khalil, S. Özdemir
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引用次数: 3

摘要

近年来,无线传感器网络(WSNs)在不希望或不可能进行人为干预的控制系统中越来越受欢迎。无线传感器网络没有固定的或计划好的基础设施。因此,虚拟骨干网(VB)被广泛应用于无线传感器网络的拓扑控制、高效路由和广播通信。连接支配集(CDS)是一种很有前途的解决方案,用于构造由不同特征刺激的无线传感器网络的VB。据我们所知;所有相关工作都采用启发式和/或元启发式优化,通过考虑相互矛盾的设计特征来制定WSNs中的cds。然而;在制定CDS时,没有研究WSN数据可靠性的工作报道。本文的主要贡献是利用概率网络模型(PNM)解决了由CDS控制拓扑结构的WSN的可靠性问题。现有的CDS研究只考虑支配者之间的可靠性,而不考虑被支配者的可靠性。我们同时考虑了支配者和被支配者的可靠性,以提高网络的整体可靠性。本文采用的网络模型采用不确定性度量、概率参数和源与目标之间的欧几里得距离,比以往的工作更真实。我们首先研究如何在考虑无线传感器网络的主要设计特征(即可靠性和能效)的情况下制定和维护基于进化的CDS。通过大量仿真对该协议的性能进行了评价,并与RMCDS-GA和贪心区域- mCDS进行了比较。我们发现我们的协议在网络可靠性和CDS大小之间产生了更好的权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CDS based reliable topology control in WSNs
Wireless Sensor Networks (WSNs) have become increasingly popular in recent years for controlling systems where human intervention is undesirable or impossible. There is no fixed or planned infrastructure for WSNs. Therefore, Virtual Backbone (VB) is currently used to support topology control, efficient routing and broadcast communication in WSNs. A Connected Dominating Set (CDS) is a promising candidate solution for constructing a VB stimulated by different characteristics of WSNs. To the best of our knowledge; all related work employ heuristic and/or meta-heuristic optimizations for formulating CDSs in WSNs by considering contradictory design features. However; no work reported that tackles with the data reliability of WSN while formulating the CDS. The main contribution of this paper is to address the reliability problem of WSN where the topology is controlled by CDS using a probabilistic network model (PNM). The existing work on CDS considers only reliability among dominators regardless of dominatees reliability. We considered both dominators and dominatees reliability to improve overall reliability of the network. The network model used in this paper is more realistic compared to previous work by employing uncertainty measure, probabilistic parameters and Euclidean distance between the source and destination. We first aim to study how to formulate and maintain an Evolutionary based - CDS considering the main design features of WSNs, i.e. reliability and energy efficiency. The performance of the protocol is evaluated by extensive simulation and compared with RMCDS-GA and Greedy area - mCDS. We found that our protocol yields better trade-off between network reliability and the size of CDS.
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