Radio irregularity problem in wireless sensor networks: New experimental results

N. Ababneh
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引用次数: 30

Abstract

A key design issue in wireless networks is represented by the irregular and dynamic radio coverage at each node. This is especially true for wireless sensor networks, which usually employ low quality radio modules to reduce the cost. It results in irregularity in radio coverage and variations in packet reception in different directions. Due to its likely impact on the upper layer protocols, many services, such as localization, routing and others, needs to be resilient to the irregular and dynamic radio propagation, and to include mechanisms to deal with these problems. As such, accurate models of radio propagation patterns are important for protocol design and evaluation. In this paper, measurements of radio propagation patterns have been carried out using the motes themselves. With empirical data obtained from the Mica2 platforms we were able to observe and further quantify such phenomena. The results demonstrate that the radio pattern is largely random; however, radio signal attenuation varies along different direction, and more importantly, is time-varying while stationary.
无线传感器网络中的无线电不规则性问题:新的实验结果
无线网络设计中的一个关键问题是每个节点的不规则和动态无线电覆盖。对于无线传感器网络来说尤其如此,它通常采用低质量的无线电模块来降低成本。它导致无线电覆盖的不规则性和不同方向的分组接收变化。由于它可能对上层协议产生影响,许多服务,如定位、路由等,需要对不规则和动态的无线电传播具有弹性,并包含处理这些问题的机制。因此,无线电传播模式的精确模型对于协议设计和评估非常重要。在本文中,利用粒子本身进行了无线电传播模式的测量。通过从Mica2平台获得的经验数据,我们能够观察并进一步量化这些现象。结果表明,射电方向图在很大程度上是随机的;然而,无线电信号的衰减在不同的方向上是不同的,更重要的是,它在平稳的同时是时变的。
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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