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Optimal placement of multiple types of communicating sensors withavailability and coverage redundancy constraints

机译:多种类型的通信传感器的最佳位置和覆盖冗余约束

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Determination of an optimal configuration (numbers, types, and locations) of a sensor network is an important practical problem. In most applications, complex signal propagation effects and inhomogeneous coverage preferences lead to an optimal solution that is highly irregular and nonintuitive. The general optimization problem can be strictly formulated as a binary linear programming problem. Due to the combinatorial nature of this problem, however, its strict solution requires significant computational resources (NP-complete class of complexity) and is unobtainable for large spatial grids of candidate sensor locations. For this reason, a greedy algorithm for approximate solution was recently introduced [S. N. Vecherin, D. K. Wilson, and C. L. Pettit, "Optimal sensor placement with terrain-based constraints and signal propagation effects," Unattended Ground, Sea, and Air Sensor Technologies and Applications XI, SPIE Proc. Vol. 7333, paper 73330S (2009)]. Here further extensions to the developed algorithm are presented to include such practical needs and constraints as sensor availability, coverage by multiple sensors, and wireless communication of the sensor information. Both communication and detection are considered in a probabilistic framework. Communication signal and signature propagation effects are taken into account when calculating probabilities of communication and detection. Comparison of approximate and strict solutions on reduced-size problems suggests that the approximate algorithm yields quick and good solutions, which thus justifies using that algorithm for full-size problems. Examples of three-dimensional outdoor sensor placement are provided using a terrain-based software analysis tool.
机译:确定传感器网络的最佳配置(数字,类型和位置)是一个重要的实际问题。在大多数应用中,复杂信号传播效应和不均匀的覆盖偏好导致最佳的解决方案,这是高度不规则和非完整性的。一般优化问题可以严格制定为二进制线性规划问题。然而,由于这个问题的组合性质,其严格的解决方案需要显着的计算资源(NP-完整的复杂性),并且对于候选传感器位置的大型空间网格来说是不可接收的。因此,最近介绍了一种贪婪的近似解决方案算法[S. N.VeCherin,D.K.Wilson和C.L.Pettit,“最佳传感器放置”与地形的基于的约束和信号传播效果,无人看管地,海和空气传感器技术和应用Xi,Spie Proc。卷。 7333,文件73330S(2009)]。这里提出了对发布算法的进一步扩展,以包括这种实际需要和限制作为传感器可用性,由多个传感器的覆盖范围以及传感器信息的无线通信。在概率框架中考虑通信和检测。计算通信和检测的概率时,考虑通信信号和签名传播效果。对减小问题的近似和严格解决方案的比较表明,近似算法产生了快速且良好的解决方案,因此使用该算法对全尺寸问题的算法证明。使用基于地形的软件分析工具提供三维室外传感器放置的示例。

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