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Analysis of Signal Propagation in an Experiment Room with Epoxy Covered Floor for Wireless Sensor Network Applications

机译:无线传感器网络应用中带有环氧树脂覆盖地板的实验室中的信号传播分析

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As sensor applications combined with wireless network becoming more of an everyday applications, the optimal deployment becomes ever increasing important as that would be a key important factor in the trade-off between cost and link quality. This paper reports on the effect of epoxy covered floor on signal propagation characteristics in an experiment room. Microchip developed motes were used to measure signal propagation in an experiment room where sensors would be deployed extensively. The results show that the signal strength for 30 cm antenna height provides a significant margin with respect to signal noise floor. As for the 5 cm antenna height, there is still around 25 dB margin in average before the signal reaches noise floor. Analysis shows that the log-distance model is the best fit to the measured data. Free Space Loss model seemed to under estimate the overall performance of the signals. An important conclusion from this study is that wireless mote deployment must consider the margin between the two signals of antenna heights and the margin to noise floor to avoid link quality deterioration especially for sensitive data acquisition applications.
机译:随着传感器应用程序与无线网络的结合越来越成为日常应用程序,最佳部署变得越来越重要,因为这将是在成本和链路质量之间进行权衡的关键因素。本文报告了环氧覆盖地板对实验室信号传播特性的影响。 Microchip开发的微尘被用于在实验室中测量信号传播,在实验室中将广泛部署传感器。结果表明,天线高度为30 cm时的信号强度相对于信号本底噪声提供了很大的余量。至于5厘米的天线高度,在信号到达本底噪声之前,平均仍有大约25 dB的余量。分析表明,对数距离模型最适合实测数据。自由空间损耗模型似乎无法估计信号的整体性能。这项研究得出的重要结论是,无线节点的部署必须考虑两个天线高度信号之间的裕度以及本底噪声,以避免链路质量下降,特别是对于敏感数据采集应用。

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