Optimal sensor deployment in complex 3D terrain surface

Hai Chen, Tun Zhao, W. Qian
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Abstract

Three-dimensional (3D) optimal sensor deployment is to plan the least sensors to cover the surface of the 3D terrain under the condition of reaching a certain coverage rate. Since the existing methods do not consider the terrain obscured effect, a 3D sensor deployment method based on viewshed and pattern search is proposed in this paper. Firstly, the problem is mathematically described by using the sensor detection model and terrain obscured effect. Secondly, the detailed implementation steps of the method are given. The viewshed algorithm is used to calculate the coverage rate of the sensors and establish the objective function. The pattern search algorithm is used to optimize the deployment location of sensors. Finally, the proposed method is verified by simulation. The simulation results show that the method can plan the least sensors on the surface of a given 3D complex terrain to reach a certain coverage rate, and avoid falling into the local optimization.
复杂三维地形表面传感器优化部署
三维(3D)传感器优化部署是指在达到一定覆盖率的情况下,规划最少的传感器覆盖三维地形表面。针对现有方法未考虑地形遮挡效应的问题,本文提出了一种基于视场和模式搜索的三维传感器部署方法。首先,利用传感器检测模型和地形遮挡效应对问题进行数学描述;其次,给出了该方法的具体实现步骤。利用视域算法计算传感器的覆盖率,建立目标函数。采用模式搜索算法优化传感器的部署位置。最后,通过仿真验证了该方法的有效性。仿真结果表明,该方法可以在给定的三维复杂地形表面规划最少的传感器,使其达到一定的覆盖率,避免陷入局部优化。
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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