Analysis of Wired Short Cuts in Wireless Sensor Networks

R. Chitradurga, A. Helmy
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Abstract

In this paper we investigate the use of wired short cuts in sensor networks. This new paradigm augments a sensor network with a very limited wired infrastructure to improve its overall energy-efficiency. Energy-efficiency is obtained by reduction in average path length. We have developed an analytical model to analyze the gain in path length reduction by using short cuts. We have also conducted extensive simulations to validate our analysis. Our results show that there is an optimal wire length for which the path length reduction is at its maximum, beyond which it decreases. The optimal length is only a small fraction (37.8-50%) of the network diameter. In a network with 1000 nodes uniformly distributed on a disk the path length reduction saturates at 60-70% with 5-24 wires, depending on the location of the sink. Also, we find that restricting the knowledge about the wires to 2 hops does not degrade the performance from the case when we have global knowledge of all wires. These results show promise of the new paradigm.
无线传感器网络中的有线捷径分析
在本文中,我们研究了有线捷径在传感器网络中的使用。这种新模式增加了传感器网络的有线基础设施非常有限,以提高其整体能源效率。能源效率是通过减少平均路径长度来实现的。我们开发了一个分析模型来分析使用捷径减少路径长度的增益。我们还进行了大量的模拟来验证我们的分析。我们的结果表明,存在一个最优导线长度,路径长度减小在其最大值,超过该值路径长度减小。最优长度仅为网络直径的一小部分(37.8-50%)。在一个有1000个节点均匀分布在磁盘上的网络中,根据接收器的位置,5-24条线的路径长度减少达到60-70%。此外,我们发现,与我们拥有所有线路的全局知识相比,将有关线路的知识限制为2跳并不会降低性能。这些结果显示了新范式的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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