Communication Networks and Security Research Lab, University of Carthage, Ariana, 2083, Tunisia.
Sensors (Basel). 2011;11(10):9904-27. doi: 10.3390/s111009904. Epub 2011 Oct 20.
Recent advances in integrated electronic devices motivated the use of Wireless Sensor Networks (WSNs) in many applications including domain surveillance and mobile target tracking, where a number of sensors are scattered within a sensitive region to detect the presence of intruders and forward related events to some analysis center(s). Obviously, sensor deployment should guarantee an optimal event detection rate and should reduce coverage holes. Most of the coverage control approaches proposed in the literature deal with two-dimensional zones and do not develop strategies to handle coverage in three-dimensional domains, which is becoming a requirement for many applications including water monitoring, indoor surveillance, and projectile tracking. This paper proposes efficient techniques to detect coverage holes in a 3D domain using a finite set of sensors, repair the holes, and track hostile targets. To this end, we use the concepts of Voronoi tessellation, Vietoris complex, and retract by deformation. We show in particular that, through a set of iterative transformations of the Vietoris complex corresponding to the deployed sensors, the number of coverage holes can be computed with a low complexity. Mobility strategies are also proposed to repair holes by moving appropriately sensors towards the uncovered zones. The tracking objective is to set a non-uniform WSN coverage within the monitored domain to allow detecting the target(s) by the set of sensors. We show, in particular, how the proposed algorithms adapt to cope with obstacles. Simulation experiments are carried out to analyze the efficiency of the proposed models. To our knowledge, repairing and tracking is addressed for the first time in 3D spaces with different sensor coverage schemes.
最近,集成电子设备的进步推动了无线传感器网络(WSN)在许多应用中的使用,包括领域监测和移动目标跟踪,其中许多传感器散布在敏感区域内,以检测入侵者的存在并将相关事件转发到一些分析中心。显然,传感器的部署应保证最佳的事件检测率,并应减少覆盖空洞。文献中提出的大多数覆盖控制方法都涉及二维区域,并未制定策略来处理三维区域中的覆盖,这对于许多应用,包括水监测、室内监控和弹丸跟踪等,已经成为一种需求。本文提出了使用有限数量的传感器检测三维域中的覆盖空洞、修复空洞和跟踪敌对目标的有效技术。为此,我们使用 Voronoi 图剖分、Vietoris 复形和变形收缩的概念。我们特别表明,通过对相应于部署传感器的 Vietoris 复形的一组迭代变换,可以以低复杂度计算覆盖空洞的数量。还提出了移动策略,通过适当移动传感器来修复空洞。跟踪目标是在监测区域内设置非均匀的 WSN 覆盖,以便通过一组传感器检测到目标。我们特别表明,所提出的算法如何适应障碍物。进行了仿真实验来分析所提出模型的效率。据我们所知,首次在具有不同传感器覆盖方案的 3D 空间中解决了修复和跟踪问题。