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Physarum optimization: A biology-inspired algorithm for minimal exposure path problem in wireless sensor networks

机译:Physarum优化:一种受生物学启发的算法,可最大程度地减少无线传感器网络中的暴露路径问题

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摘要

Using insights from biological processes could help to design new optimization techniques for long-standing computational problems. This paper exploits a cellular computing model in the slime mold physarum polycephalum to solve the minimal exposure path problem which is a fundamental problem corresponding to the worst-case coverage in wireless sensor networks. We first formulate the minimal exposure path problem, and then convert it into the shortest path problem by discretizing the monitoring field to a large-scale weighted grid. Inspired by the path-finding capability of physarum, we develop a new optimization algorithm, named as the physarum optimization, for solving the shortest path problem. Our proposed algorithm is with low-complexity and high-parallelism. Moreover, the core mechanism of our physarum optimization is also helpful for designing new graph algorithms and improving routing protocols and topology control in self-organized networks.
机译:利用来自生物过程的见解可以帮助设计针对长期计算问题的新优化技术。本文利用粘液菌多头颅骨中的蜂窝计算模型来解决最小暴露路径问题,这是与无线传感器网络中最坏情况的覆盖范围相对应的基本问题。我们首先制定最小曝光路径问题,然后通过将监视场离散到大型加权网格将其转换为最短路径问题。受of骨寻路能力的启发,我们开发了一种新的优化算法,称为the骨寻优,以解决最短路径问题。我们提出的算法具有低复杂度和高并行度。此外,我们的物理骨干优化的核心机制还有助于设计新的图算法以及改进自组织网络中的路由协议和拓扑控制。

著录项

  • 来源
    《INFOCOM, 2012 Proceedings IEEE》|2012年|p.1296- 1304|共9页
  • 会议地点 Orlando FL(US)
  • 作者

    Liu Liang;

  • 作者单位

    Beijing Key Lab of Intelligent Telecomm. Software and Multimedia, Beijing University of Posts and Telecomm., 100876, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 通信;
  • 关键词

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