An Evidential Approach for Area Coverage in Mobile Wireless Sensor Networks

Adda Boualem, Marwane Ayaida, Cyril de Runz, Y. Dahmani
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引用次数: 3

Abstract

The study of coverage problem in uncertain WSN environment requires the consideration of this uncertainty by taking the best possible decisions, since it is impossible to explicitly represent all the combinatorics to produce a conditional active/passive state nodes' planning in the area of interest, and allow reasoning on various environmental states of the partially known physical world. This paper addresses the problem of area coverage based on the Dempster-Shafer theory. The authors aim to ensure the full area coverage while using a subset of connected nodes, with minimal costs using a minimal number of dominant nodes regardless of the type of used deployment (random or deterministic). This is ensured by activating a single node in each subset of each geographic sub-area, thus extending the lifetime of the wireless sensor network to its maximum. The comparison of the proposed model denoted evidential approach for area coverage (EAAC) with two well-known protocols and with a recent one showed a better performance and a slight improvement in the covered area.
移动无线传感器网络区域覆盖的证据方法
研究不确定WSN环境下的覆盖问题需要考虑这种不确定性,采取最好的决策,因为不可能明确地表示所有的组合来产生一个有条件的主动/被动状态节点在感兴趣的区域的规划,并允许对部分已知物理世界的各种环境状态进行推理。本文基于Dempster-Shafer理论解决了区域覆盖问题。作者的目标是在使用连接节点的子集时,以最小的成本使用最少数量的主导节点,而不管使用的部署类型(随机或确定性),确保整个区域的覆盖。这是通过激活每个地理子区域的每个子集中的单个节点来确保的,从而将无线传感器网络的生命周期延长到最大。将所提出的区域覆盖证据方法与两种知名协议和一种新协议进行了比较,结果表明该方法具有更好的性能,覆盖面积略有提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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