面向链的无线传感器网络中一种高效的局部链构建方案

Q. Mamun, S. Ramakrishnan, B. Srinivasan
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引用次数: 11

摘要

有效的逻辑拓扑结构有助于无线传感器网络(wsn)最小化不同的约束。对于大规模的无线传感器网络,面向链的逻辑拓扑比其他逻辑拓扑具有更强的能量保守性。链构造是创建面向链的逻辑拓扑的主要挑战。在本文中,我们提出了一种链构造方案,该方案利用Voronoi镶嵌为拓扑结构创建多个链。该方案的主要思想是将目标域划分为许多小区域(即Voronoi细胞),以便在每个细胞中构建一个链。为了在Voronoi细胞中构建链,我们使用了一种协议,该协议保证距离的平方和将是最小的。我们将我们的链构造算法与其他类似的算法进行了比较。仿真结果表明,提出的基于Voronoi图的算法节省了更多的能量,延长了网络的生命周期,降低了数据采集延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Efficient Localized Chain Construction Scheme for Chain Oriented Wireless Sensor Networks
An efficient logical topology helps wireless sensor networks (WSNs) minimizing different constraints. For large-scale WSNs, chain oriented logical topologies are shown to be more energy conservative than other logical topologies. Chain construction is the main challenge to create a chain oriented logical topology. In this paper, we propose a chain construction scheme, which creates several chains for the topology using Voronoi tessellation. The main idea of this scheme is to divide the target field into a number of small areas (i.e., Voronoi cells) so that in each cell, a chain is constructed. To construct a chain in a Voronoi cell, we use a protocol, which guarantees the summation of square to the distances would be the lowest. We compare our chain construction algorithm with other similar algorithms. Simulation results show that proposed Voronoi diagram based algorithm saves more energy, lengthens lifetime of the network, and reduces data collection latency.
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