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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >UWB Signal Propagation at the Human Head
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UWB Signal Propagation at the Human Head

机译:超宽带信号在人头的传播

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Among different wireless solutions, ultra-wideband (UWB) communication is one promising transmission technology for wireless body area networks (WBANs). To optimize receiver structures and antennas for UWB WBANs with respect to energy efficiency and complexity, the distinct features of the body area network channel have to be considered. Thus, it is necessary to know the propagation mechanisms in the proximity of the human body. In this paper, we limit ourselves to transmission at the head, since the most important human communication organs, such as the mouth, eyes, and ears, are located there. We especially focus on the link between both ears and consider direct transmission, surface waves, reflections, and diffraction as possible propagation mechanisms. We show theoretically and by measurements, which were performed in the frequency range between 1.5-8 GHz, that direct transmission through the head is negligible due to the strong attenuation. We conclude by process of elimination that diffraction is the main propagation mechanism around the human body and verify these conclusions using a finite-difference time-domain simulation. Based on a second measurement campaign, we derive an approximation of the average power delay profile for the ear-to-ear link and calculate values for mean excess delay and delay spread. Finally, we briefly discuss the impact of the distinct ear-to-ear channel characteristic on the design of a WBAN communication system.
机译:在不同的无线解决方案中,超宽带(UWB)通信是一种用于无线体域网(WBAN)的有前途的传输技术。为了在能量效率和复杂性方面优化用于UWB WBAN的接收器结构和天线,必须考虑人体局域网通道的独特功能。因此,有必要知道人体附近的传播机理。在本文中,我们将自己局限于头部的传播,因为最重要的人类交流器官(如嘴,眼和耳)都位于那里。我们特别关注两只耳朵之间的联系,并将直接传输,表面波,反射和衍射视为可能的传播机制。我们从理论上和通过在1.5-8 GHz之间的频率范围内进行的测量显示,由于强烈的衰减,通过磁头的直接传输可以忽略不计。我们通过消除过程得出结论,衍射是人体周围主要传播机制,并使用时域有限差分模拟验证了这些结论。在第二次测量活动的基础上,我们推导出了耳对耳链路的平均功率延迟曲线的近似值,并计算了平均过量延迟和延迟扩展的值。最后,我们简要讨论了独特的耳对耳通道特性对WBAN通信系统设计的影响。

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