随机节点放置提高无线传感器网络容错性

Mika Ishizuka, Masaki Aida
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引用次数: 8

摘要

无线传感器网络中最重要的问题之一是开发提高容错性的技术,因为传感器节点容易发生故障(例如,由于机械原因)并且能量存储有限。确定传感器节点位置的策略非常重要,因为它会影响目标在节点的传感范围内的可能性,以及从该节点返回基站的通信路径。我们考虑到当许多传感器节点被放置在一个广阔的区域时,一种有效的方法是随机节点放置,其中传感器可以以受控的方式分散,使其近似位置用概率密度函数表征。然后,作为我们研究的第一步,我们提出了随机节点放置,其中节点的度遵循幂律分布(“幂律放置”)。通过仿真研究,我们已经表明,与一般随机节点放置相比,具有良好调优参数的幂律放置对随机故障和电池耗尽故障具有更高的容忍度。然而,这很难实现。作为我们研究的第二步,本文提出了一种随机节点放置的替代方法,该方法具有与幂律放置一样高的容错性,并且可以在合理的复杂程度下实现。为此,我们首先研究了其他类型的随机节点放置所需的要求,以显示与幂律放置一样高的容错性。接下来,我们提出了满足这些要求的随机节点放置方法。我们的建议具有理论基础,任何随机节点的放置都可以通过在一些适当控制的操作中从空中多次散射传感器节点来实现。©2006 Wiley期刊公司电子工程学报,2009,31 (3):442 - 453,2007;在线发表于Wiley InterScience (www.interscience.wiley.com)。DOI 10.1002 / ecja.20319
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stochastic node placement improving fault tolerance in wireless sensor networks

One of the most important issues in wireless sensor networks is to develop the technology for improved fault tolerance, since sensor nodes are prone to failure (for mechanical reasons, for example) and have limited energy storage. The strategy for determining the positions in which sensor nodes are placed is very important, because it affects the likelihood that a target will be within the sensing range of a node, and that there will be a communication path from that node back to the base station. We have considered that when many sensor nodes are to be placed in a wide area, an effective approach is stochastic node placement, whereby sensors may be scattered in a controlled manner, such that their approximate positions are characterized by a probability density function. Then, as the first step of our research, we have proposed stochastic node placements in which the degrees of the nodes follow a power-law distribution (“power-law placement”). Through simulation studies, we have shown that power-law placement, with well-tuned parameters, shows a higher tolerance against random failures and failure through battery exhaustion than general stochastic node placement. However, this can be difficult to implement. As the second step of our research, this paper proposes an alternative method of stochastic node placement that has as high a fault tolerance as power-law placement and can be achieved with a reasonable degree of complexity. To this end, we first investigate the requirements necessary for other types of stochastic node placement to exhibit as high a fault tolerance as power-law placement. Next, we propose ways of achieving stochastic node placement that meets these requirements. Our proposal has theoretical basis that any stochastic node placement can be achieved by scattering sensor nodes many times from the air in a number of appropriately controlled operations. © 2006 Wiley Periodicals, Inc. Electron Comm Jpn Pt 1, 90(3): 42–53, 2007; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/ecja.20319

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