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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >Distributed Deployment Schemes for Mobile Wireless Sensor Networks to Ensure Multilevel Coverage
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Distributed Deployment Schemes for Mobile Wireless Sensor Networks to Ensure Multilevel Coverage

机译:用于确保多层覆盖的移动无线传感器网络的分布式部署方案

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One of the research issues in wireless sensor networks (WSNs) is how to efficiently deploy sensors to cover an area. In this paper, we solve the k-coverage sensor deployment problem to achieve multi-level coverage of an area I. We consider two sub-problems: k-coverage placement and distributed dispatch problems. The placement problem asks how to determine the minimum number of sensors required and their locations in I to guarantee that I is k-covered and the network is connected; the dispatch problem asks how to schedule mobile sensors to move to the designated locations according to the result computed by the placement strategy such that the energy consumption due to movement is minimized. Our solutions to the placement problem consider both the binary and probabilistic sensing models, and allow an arbitrary relationship between the communication distance and sensing distance of sensors. For the dispatch problem, we propose a competition-based and a pattern-based schemes. The former allows mobile sensors to bid for their closest locations, while the latter allows sensors to derive the target locations on their own. Our proposed schemes are efficient in terms of the number of sensors required and are distributed in nature. Simulation results are presented to verify their effectiveness.
机译:无线传感器网络(WSN)的研究问题之一是如何有效地部署传感器以覆盖某个区域。在本文中,我们解决了k覆盖传感器的部署问题,以实现对区域I的多层覆盖。我们考虑了两个子问题:k覆盖放置和分布式调度问题。放置问题询问如何确定所需的最小传感器数量及其在I中的位置,以确保I被覆盖并且网络已连接;调度问题询问如何根据放置策略计算的结果来调度移动传感器以移动到指定位置,以使移动引起的能耗最小。我们针对放置问题的解决方案同时考虑了二进制和概率感测模型,并允许传感器的通信距离和感测距离之间具有任意关系。对于调度问题,我们提出了基于竞争和基于模式的方案。前者允许移动传感器竞标其最接近的位置,而后者则允许传感器自行推导目标位置。我们提出的方案在所需的传感器数量方面是有效的,并且实际上是分布式的。仿真结果表明了其有效性。

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