室内2.4GHz无线电信号传播模型及实验结果

Michal Kochlán, J. Micek
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引用次数: 11

摘要

在无线通信环境下,特别是室内环境是不友好的环境。无线传感器网络在室内的应用与上述事实相反,它们非常普遍。考虑到射频信号在真实环境中的传播(不考虑其他来源的干扰),我们通常会遇到四种基本现象——反射、路径损耗、散射和衍射。每一个都影响信号的传播,并导致接收机的路径损耗和失真。对电磁波在空间中的传播进行全面的描述,可以从理论上得到麦克斯韦方程组的解。但是,这种方法对计算量要求很高,对于实际情况来说效率不高。为了更好地描述射频信号的传播,通常使用基于实验结果的近似模型。本文以2.4 GHz ISM(工业、科学和医疗)频段的室内射频信号传播为例进行了研究,并给出了传播模型的实现和实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indoor propagation of 2.4GHz radio signal propagation models and experimental results
Having a wireless communication, indoor environment, in particular, represents unfriendly environment. Wireless sensor network applications indoors are in contrast to the mentioned fact and they are very common. Considering radio frequency signal propagation in a real environment (without bearing in mind interferences from other sources) we meet, in general, four basic phenomenon - reflection, path-loss, scattering and diffraction. Every single one impacts on the signal propagation and contributes to the path-loss and distortion at the receiver. A thorough picture of the electromagnetic wave propagation in the space can theoretically obtain the solution of Maxwell's equations. Though, this approach is computationally demanding and ineffective for the practical cases. In order to better describe the propagation of a radio frequency signal, the approximate models are used that usually base on experimental results. This paper presents case study on the indoor radio frequency signal propagation at 2.4 GHz ISM Band (Industrial, Scientific and Medical) supported by the propagation models implementation and experimental results..
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