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Obstacle-avoidance minimal exposure path for heterogeneous wireless sensor networks

机译:异构无线传感器网络的避障最小暴露路径

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The exploration of the minimal exposure path has significance in guiding the movement of unauthorized objects through monitored areas. In wireless sensor networks, the minimal exposure path can be further used to evaluate the worst-case coverage. This paper analyzes the minimal exposure path in an area that contains heterogeneous sensor nodes and various obstacles. Two exposure-based coverage models are first established to describe the detection patterns of both omnidirectional and directional sensing units. Based on the models, the exposure value of an arbitrary path can be mathematically derived. Next, the obstacle-avoidance minimal exposure path searching (OMEPS) algorithm is proposed to find the minimal exposure path in an environment that includes obstacles. In addition to searching for areas with a poor degree of coverage, OMEPS guides mobile objects through coverage holes caused by obstacles without fear of exposure. Simulation results demonstrate that OMEPS can enable a heterogeneous wireless sensor network to efficiently determine its minimal exposure path. Additional sensors can then be deployed along the minimal exposure path to improve the quality of coverage. (C) 2016 Elsevier B.V. All rights reserved.
机译:最小暴露路径的探索对于引导未经授权的物体通过监视区域的移动具有重要意义。在无线传感器网络中,最小暴露路径可进一步用于评估最坏情况的覆盖范围。本文分析了包含异类传感器节点和各种障碍物的区域中的最小曝光路径。首先建立两个基于曝光的覆盖模型,以描述全向和定向感测单元的检测模式。基于这些模型,可以数学计算出任意路径的曝光值。接下来,提出了避障最小暴露路径搜索(OMEPS)算法,以在包含障碍物的环境中找到最小暴露路径。除了搜索覆盖范围较差的区域外,OMEPS还可引导移动物体通过障碍物造成的覆盖孔,而不必担心暴露。仿真结果表明,OMEPS可以使异构无线传感器网络有效地确定其最小暴露路径。然后可以沿着最小的曝光路径部署其他传感器,以提高覆盖质量。 (C)2016 Elsevier B.V.保留所有权利。

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