目标覆盖使用传感器云协作平台

Biplab K. Sen, Sunirmal Khatua, R. Das
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引用次数: 3

摘要

目前,传感器云已经成为无线传感器网络(WSN)和云计算领域的研究热点。传感器云平台的一个组成部分是无线传感器网络供应商之间的协作,它提高了传感器资源的利用率。这种协作环境中的物理传感器在来自不同管理域的多个应用程序之间共享。在本文中,我们提出了一个传感器云架构,允许用户在协作平台内按需部署他们的传感器应用程序。应用程序使用的传感器资源作为服务提供给用户。提供这种服务的成本取决于为该应用所选择的覆盖目标(感兴趣的位置)的物理传感器的数量以及将所选择的物理传感器连接到基站的数量。本文针对该问题提出了一种两阶段算法。在第一阶段(覆盖),使用整数规划问题(IPP)找到覆盖目标的最小传感器集。在下一阶段(连通性)中,使用启发式方法扩展集合,以确保所有选定传感器的连通性。通过仿真验证了该方法的性能,表明在多个非协作wsn上使用协作具有显著的改进。我们还在文献中建立了启发式算法在确保连通性方面的优越性。
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Target coverage using a collaborative platform for sensor cloud
Nowadays Sensor-cloud has received a lot of interests among researchers in the field of Wireless Sensor Networks (WSN) as well as Cloud Computing. An integral part of the Sensor Cloud platform is the Collaboration of WSN providers which improves the utilization of sensor resources. The physical sensors in such a collaborative environment are shared among multiple applications from different administrative domains. In this paper, we propose a Sensor Cloud Architecture which allows the users to deploy their sensor applications on-demand within the collaborative platform. The sensor resources used by the application are provided as a service to the user. The cost for offering such service depends on the number of physical sensors selected for covering the targets (locations of interest) for that application as well as connecting the selected physical sensors to the base station. In this paper, we proposed a two phase algorithm for this problem. In the first phase (Coverage), an Integer Programming Problem(IPP) is used to find a minimum set of sensors to cover the targets. In the next phase (Connectivity) a heuristic is used to extend the set such that connectivity of all the selected sensors is ensured. The performance of the proposed approach is validated through simulation which shows significant improvement of using collaboration over multiple non-collaborative WSNs. We also establish the superiority of the heuristic for ensuring connectivity over one such algorithm in the literature.
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