室内传感器网络的最佳中继布局

Cuiyao Xue, Yanmin Zhu, Lei Ni, Minglu Li, B. Li
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引用次数: 7

摘要

对于许多传感器网络来说,其鲁棒运行依赖于部署中继以确保无线覆盖。本文研究了室内环境下无线传感器网络中继优化配置的关键问题。继电器的放置对于确保通信质量和数据收集至关重要。许多现有的算法已经被提出,以确保完全的传感覆盖和网络连接。由于室内环境的复杂性,这些算法很难应用于室内环境,在室内环境中,无线电信号会被墙壁等障碍物大大降低。我们首先从理论上证明了室内中继布置问题是np困难的。然后,我们预测了给定中继部署在室内环境中的无线电覆盖范围,然后提出了一种有效的贪婪算法来计算所需覆盖质量的中继部署位置。该算法被证明为理论最优提供了Hn因子近似,其中Hn = 1 + 1/2 +⋯+ 1/n = ln(n) + 1, n是所有网格点的个数。实验结果表明,该算法比其他两种算法具有更好的性能。据我们所知,我们的工作是第一个研究复杂室内环境中传感器网络的最佳继电器放置问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Relay Placement for Indoor Sensor Networks
To many sensor networks, the robust operation depends on deploying relays to ensure wireless coverage. This paper considers the crucial problem of optimal relay placement for wireless sensor networks in indoor environments. The placement of relays is essential for ensuring communication quality and data collection. A number of existing algorithms have been proposed for ensuring full sensing coverage and network connectivity. These algorithms can hardly be applied to indoor environments because of the complexity of indoor environments, in which a radio signal can be dramatically degraded by obstacles like walls. We firstly theoretically prove that the indoor relay placement problem is NP-hard. We then predict radio coverage of a given relay deployment in indoor environments, and then propose a efficient greedy algorithm for computing the relay deployment locations for required coverage quality. This algorithm is proved to provide a Hn factor approximation to the theoretical optimum, where Hn = 1 + 1/2 + ⋯ + 1/n = ln(n) + 1, and n is the number of all grid points. Experimental results demonstrate the proposed algorithm achieves better performance than two other algorithms. To our knowledge, our work is the very first that study the optimal relay placement problem for sensor networks in complex indoor environments.
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