Xu Huping, Zhu Jiajun, Wang Bang
School of Logistics Engineering, Wuhan University of Technology, Heping Road #1040, Wuhan 430070, China.
School of Electronic, Information and Communications, Huazhong University of Science and Technology, Luoyu Lu #1037, Wuhan 430074, China.
Sensors (Basel). 2015 May 14;15(5):11277-94. doi: 10.3390/s150511277.
Coverage and connectivity are two important performance metrics in wireless sensor networks. In this paper, we study the sensor placement problem to achieve both coverage and connectivity. Instead of using the simplistic disk coverage model, we use our recently proposed confident information coverage model as the sensor coverage model. The grid approach is applied to discretize the sensing field, and our objective is to place the minimum number of sensors to form a connected network and to provide confident information coverage for all of the grid points. We first formulate the sensor placement problem as a constrained optimization problem. Then, two heuristic algorithms, namely the connected cover formation (CCF) algorithm and the cover formation and relay placement with redundancy removal (CFRP-RR) algorithm, are proposed to find the approximate solutions for the sensor placement problem. The simulation results validate their effectiveness, and the CCF algorithm performs slightly better than the CFRP-RR algorithm.
覆盖范围和连通性是无线传感器网络中的两个重要性能指标。在本文中,我们研究传感器放置问题以同时实现覆盖范围和连通性。我们不使用简单的圆盘覆盖模型,而是使用我们最近提出的置信信息覆盖模型作为传感器覆盖模型。采用网格方法离散传感区域,我们的目标是放置最少数量的传感器以形成一个连通网络,并为所有网格点提供置信信息覆盖。我们首先将传感器放置问题表述为一个约束优化问题。然后,提出了两种启发式算法,即连通覆盖形成(CCF)算法和带冗余消除的覆盖形成与中继放置(CFRP-RR)算法,以找到传感器放置问题的近似解。仿真结果验证了它们的有效性,并且CCF算法的性能略优于CFRP-RR算法。