Yu Zhiyong, Tang Rongxin, Yuan Kai, Lin Hai, Qian Xin, Deng Xiaohua, Liu Shiyun
Institute of Space Science and Technology, Nanchang University, Nanchang 330031, China.
Lunar and Planetary Science Laboratory, Macau University of Science and Technology, Macau 999078, China.
Sensors (Basel). 2019 Jul 12;19(14):3082. doi: 10.3390/s19143082.
Virtual-force algorithms (VFAs) have been widely studied for accurate node deployment in wireless-sensor-network (WSN) applications. Their main purpose is to achieve the maximum coverage area with the minimum number of sensor nodes in the target area. Recently, we reported a new VFA based on virtual spring force (VFA-SF) and discussed in detail the corresponding efficiency via statistical analysis. The optimized strategy by adding an external central force (VFA-SF-OPT) was presented, which effectively eliminates the coverage hole or twisted structure in the final network distribution. In this paper, the parameter effects on VFA-SF and the VFA-SF-OPT were further investigated: (1) Node velocity dramatically affects the convergence rate of the node-deployment process. (2) A suitable external central force improves equilibrium distance and reduces energy consumption. (3) The effects of VFA-SF and VFA-SF-OPT for different types of obstacles are discussed. Generally, by choosing suitable parameters, both VFA-SF and VFA-SF-OPT can effectively improve node deployment and energy consumption for the whole sensor network. The results give important insight in parameter selection and information fusion in the application of a large-scale WSN.
虚拟力算法(VFA)已被广泛研究用于无线传感器网络(WSN)应用中的精确节点部署。其主要目的是在目标区域内用最少数量的传感器节点实现最大覆盖面积。最近,我们报道了一种基于虚拟弹簧力的新型VFA(VFA-SF),并通过统计分析详细讨论了相应的效率。提出了通过添加外部中心力的优化策略(VFA-SF-OPT),该策略有效消除了最终网络分布中的覆盖空洞或扭曲结构。本文进一步研究了参数对VFA-SF和VFA-SF-OPT的影响:(1)节点速度显著影响节点部署过程的收敛速度。(2)合适的外部中心力可改善平衡距离并降低能耗。(3)讨论了VFA-SF和VFA-SF-OPT对不同类型障碍物的影响。一般来说,通过选择合适的参数,VFA-SF和VFA-SF-OPT都可以有效改善整个传感器网络的节点部署和能耗。研究结果为大规模WSN应用中的参数选择和信息融合提供了重要见解。