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Dynamic Coverage with Wireless Sensor and Actor Networks in Underwater Environment

机译:水下环境中无线传感器和Actor网络的动态覆盖

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摘要

This paper studies the problem of dynamic coverage with wireless sensor and actor networks(WSANs) in underwater environment.Different from most existing works,the WSANs consist of two kinds of nodes,i.e.,sensor nodes(SNs) which cannot move autonomously and actor nodes(ANs) which can move autonomously according to the performance requirement.The problem of how to coordinate two kinds of nodes to facilitate dynamic coverage in underwater environment is challenging due to their heterogeneous capabilities.To reduce redundancy of communication links and improve connectivity between ANs and SNs in underwater WSANs,a min-weighted rigid graph based topology optimization scheme is first developed,such that the underwater communication energy consumption can be saved.With the optimized topology,a dynamic coverage strategy is proposed to improve the coverage among SNs and ANs for underwater WSAN where underwater fluid motions are considered.Furthermore,it is proved that the network coverage area is connected by using the min-weighted rigid graph.Finally,simulation results are presented to show the effectiveness of the main results.
机译:本文研究了水下环境中无线传感器和actor网络(WSAN)的动态覆盖问题。与大多数现有工作不同,WSANs包括两种节点,即不能自主移动的传感器节点(SN)和actor节点。可以根据性能要求自动移动的节点(AN),由于它们的异构能力,如何协调两种节点以促进水下环境中的动态覆盖问题面临挑战,要减少通信链路的冗余并改善节点之间的连通性水下WSAN中的SN,首先开发了基于最小加权刚性图的拓扑优化方案,从而节省了水下通信的能耗。通过优化拓扑,提出了一种动态覆盖策略,以提高SN和AN之间的覆盖范围。考虑水下流体运动的水下WSAN。此外,证明了网络覆盖区域最后,通过仿真结果表明了主要结果的有效性。

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  • 来源
    《自动化学报:英文版》 |2015年第003期|P.274-281|共8页
  • 作者单位

    the Institute of Electrical Engineering,Yanshan University;

    the Department of Automation,Shanghai Jiao Tong University,and Key Laboratory of System Control and Information Processing,Ministry of Education of China;

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  • 正文语种 CHI
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