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Experimental Characterization of UWB On-Body Radio Channel in Indoor Environment Considering Different Antennas

机译:考虑不同天线的室内环境下UWB车载无线电信道的实验表征

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An experimental investigation to characterize the transient and spectral behavior of the ultrawideband (UWB) on-body radio propagation channel for body-centric wireless communications is presented. The measurements were performed considering over thirty on-body links in the front of human body in the anechoic chamber, and in indoor environment. Two different pairs of planar antennas have been used, namely, CPW-fed planar inverted cone antennas (PICA), and miniaturized CPW-fed tapered slot antennas (TSA). A path loss model is extracted from measured data, and a statistical study is performed on the time delay parameters. The goodness of different statistical models in fitting the root mean square (RMS) delay has been evaluated. Results demonstrate that the TSA, due to its more directive radiation behavior is less affected from the reflections from body parts and surrounding environment. The antenna shows significant size reduction and improved time delay behavior, and hence is an ideal candidate for UWB body area networks (BAN).
机译:进行了一项实验研究,以表征用于以身体为中心的无线通信的超宽带(UWB)人体无线电传播信道的瞬态和频谱行为。考虑到消声室内和室内环境中人体前面的30多个人体链接,进行了测量。已经使用了两对不同的平面天线,即CPW馈电的平面倒锥天线(PICA)和小型CPW馈电的锥形缝隙天线(TSA)。从测量数据中提取路径损耗模型,并对时延参数进行统计研究。已经评估了不同统计模型在拟合均方根(RMS)延迟方面的优势。结果表明,TSA由于其更定向的辐射行为而受到身体部位和周围环境反射的影响较小。天线显示出显着的尺寸减小和改善的时延特性,因此是UWB人体局域网(BAN)的理想候选者。

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