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An Optimized Node Deployment Solution Based on a Virtual Spring Force Algorithm for Wireless Sensor Network Applications

机译:基于虚拟弹簧力算法的无线传感器网络应用节点优化部署解决方案

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摘要

How to effectively deploy all wireless sensors and save a system’s energy consumption is a key issue in current wireless sensor network (WSN) applications. Theoretical analysis has proven that a hexagonal structure is the best topology in the two-dimensional network, which can provide the maximum coverage area with the minimum number of sensor nodes and minimum energy consumption. Recently, many scientists presented their self-deployment strategies based on different virtual forces and discussed the corresponding efficiency via several case studies. However, according to our statistical analysis, some virtual force algorithms, e.g., virtual spring force, can still cause holes or twisted structure in a small region of the final network distribution, which cannot achieve the ideal network topology and will waste the system energy in real applications. In this paper, we first statistically analyzed the convergence and deployment effect of the virtual spring force algorithm to derive our question. Then we presented an optimized strategy that sensor deployment begins from the center of the target region by adding an external central force. At the early stage, the external force will be added to the most peripheral nodes to promote the formation of hexagonal topology and avoid covering holes or unusual structure. Finally, a series of independent simulation experiments and corresponding statistical results proved that our optimized deployment solution is very stable and effective, which can improve the energy consumption of the whole sensor network and be used in the application of a large scale WSN.
机译:如何有效地部署所有无线传感器并节省系统的能耗是当前无线传感器网络(WSN)应用程序中的关键问题。理论分析已经证明,六边形结构是二维网络中最好的拓扑,它可以以最少的传感器节点数和最小的能耗提供最大的覆盖区域。最近,许多科学家提出了基于不同虚拟力量的自我部署策略,并通过一些案例研究讨论了相应的效率。但是,根据我们的统计分析,某些虚拟力算法(例如虚拟弹力)仍会在最终网络分布的较小区域中造成孔洞或扭曲结构,从而无法实现理想的网络拓扑结构,并且会浪费系统能量。实际应用。在本文中,我们首先对虚拟弹力算法的收敛和部署效果进行统计分析,以得出我们的问题。然后,我们提出了一种优化的策略,即传感器通过添加外部中心力从目标区域的中心开始部署。在早期阶段,外力将添加到最外围的节点,以促进六角形拓扑的形成,并避免覆盖孔或异常结构。最后,一系列独立的仿真实验和相应的统计结果证明,我们优化的部署解决方案非常稳定,有效,可以改善整个传感器网络的能耗,可用于大规模无线传感器网络。

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