利用传感器网络中观测数据的相关性提高传输质量

Kentaro Kobayashi, Takaya Yamazato, Hiraku Okada, Masaaki Katayama
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引用次数: 1

摘要

在传感器网络中,许多传感器节点通常位于集群中,并且通过观察在各个传感器节点处获得的数据之间存在相关性。这种观测数据是在聚变中心收集的。在本文中,我们从Kullback–Leibler(KL)信息的角度研究了融合中心的观测精度。特别是,我们将每个传感器节点通过无线通信路径进行传输时产生的传输路径误差视为KL信息恶化的一个因素,也就是观测精度,并研究其降低效果和方法,我们研究了在观测数据之间的相关性都相等并且相关性是随机的情况下,当存在传输路径误差时,在融合中心获得的KL信息。我们表明,通过在误差数据估计中使用观测数据的相关性,可以减少融合中心KL信息的恶化。此外,我们还提供了使用相关性估计融合中心观测数据之间相关性的例子,以及使用相关性估计误差数据的例子。©2007 Wiley Periodicals,股份有限公司Electron Comm Jpn Pt 3,90(11):2007年1月10日;在线发表于Wiley InterScience(www.InterScience.Wiley.com)。DOI 10.1002/ecjc.20250
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of transmission quality using correlation of observational data in sensor networks

In sensor networks, many of the sensor nodes are often positioned in clusters, and there is a correlation between the data obtained at the various sensor nodes by observation. This kind of observational data is collected at fusion centers. In this paper, we study the observation precision at fusion centers from the viewpoint of the Kullback–Leibler (KL) information. In particular, we consider transmission path errors arising when transmission is made from each sensor node via wireless communication paths, as a factor in the deterioration of the KL information, or in other words, observation precision, and study its effects and methods for reducing it. In this paper, we study the KL information obtained in fusion centers when there have been transmission path errors in cases where the correlation between observational data is all equal, and where the correlation is random. We show that the deterioration of the KL information can be reduced in fusion centers by using the correlation of observational data in the estimates of error data. In addition, we present examples of estimating the correlation between observational data in fusion centers that use correlation, and of estimating error data using correlation. © 2007 Wiley Periodicals, Inc. Electron Comm Jpn Pt 3, 90(11): 1–10, 2007; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/ecjc.20250

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