一种分布式定位纠错算法,用于网络内错误读取检测:在长-薄无线传感器网络中的适用性

Debraj De
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引用次数: 20

摘要

在不久的将来,无线传感器网络(WSN)有望广泛应用于各种应用。对于许多这样的应用程序,如果不正确地了解数据被感测的位置,单独感测的数据就没有意义。虽然已经提出了定位算法,但许多算法在复杂性、成本、安全性和准确性方面都存在不足。仍然阻碍可用定位技术效率的一些问题是多路径传播、安全攻击(由错误或恶意节点进行的内部和外部攻击),以及有时特定的网络拓扑。例如,无线传感器网络的长-薄(LT)拓扑结构由于其特殊的分布模式,极易产生定位误差。在现实世界的许多无线传感器网络应用中,也需要不使用全球定位系统(GPS)进行定位。除了高效的定位之外,WSN应用中的另一个重要操作是需要在不影响重要事件检测的情况下对故障传感器读数进行网络检测。考虑到WSN的这些至关重要的操作,我们的第一个贡献是提出一种自组织的分布式无GPS定位错误检测和校正算法。我们的下一个贡献是利用在提出的定位中获得的可靠性来构建一个改进的算法,用于网络内检测错误读数。我们还提出了一种长瘦(LT) WSN拓扑的容错结构,可以很好地利用这两种算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Distributed Algorithm for Localization Error Detection-Correction, Use in In-Network Faulty Reading Detection: Applicability in Long-Thin Wireless Sensor Networks
In near future, wireless sensors networks (WSN) are expected to be deployed for a vast variety of applications. For many of these applications, sensed data individually have no meaning without proper knowledge of position where the data was sensed. Although there have been proposed algorithms for localization, many of them fall short with respect to complexity, cost, security and accuracy. Some issues that still hinder the efficiency of available localization techniques are multi-path propagation, security attack (internal and external attack by faulty or malicious nodes), and sometimes specific network topologies. For example, the Long-Thin (LT) topology of WSN is highly prone to localization error due to its special distribution pattern. In many real world WSN applications, the localization is also needed to be Global Positioning Systems (GPS) free. Apart from efficient localization, another important operation in WSN application is the need to have in-network detection of faulty sensor readings, without compromising detection of important events. Looking at these critically important operations of WSN, our first contribution is proposing a self-organized distributed GPS free localization error detection and correction algorithm. Our next contribution is utilizing reliability gained in the proposed localization to construct an improved algorithm for in-network detection of faulty readings. We have also proposed a fault tolerant structure for Long-Thin (LT) WSN topology, that can well utilize both of the proposed algorithms.
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