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The effect of human-body shadowing on indoor UWB TOA-based ranging systems

机译:人体阴影对基于室内UWB TOA的测距系统的影响

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Because of its superior time resolution, ultra-wide bandwidth (UWB) transmission can be a highly accurate technique for ranging in indoor localization systems. Nevertheless, the presence of obstructions may deteriorate the ranging performance of the system. Indoor environments are often densely populated with people. However, t h e effect of the human body presence has been scarcely investigated so far within the UWB ranging context. In this work, we investigate this effect by conducting UWB measurements and analyzing the ranging performance of the system. Two measurement campaigns were performed in the 3–5.5 GHz band, in an anechoic chamber and a laboratory environment. The range estimates were obtained by employing the threshold-based first peak detection technique. Analysis results revealed that the human body significantly attenuates the direct-path signal component. On the other hand, in this study it does not introduce a significant range error since the length difference between the diffracted paths around the body and the direct-path is less than the spatial resolution of the measurement setup.
机译:由于其出色的时间分辨率,超宽带(UWB)传输可以成为室内定位系统中测距的一种高度精确的技术。但是,障碍物的存在可能会降低系统的测距性能。室内环境通常人口稠密。但是,到目前为止,在UWB测距范围内几乎没有研究过人体存在的影响。在这项工作中,我们通过进行UWB测量并分析系统的测距性能来研究这种影响。在消声室和实验室环境中,在3–5.5 GHz频段内进行了两次测量。范围估计值是通过使用基于阈值的第一峰值检测技术获得的。分析结果表明,人体会大大衰减直接路径信号分量。另一方面,在这项研究中,由于在人体周围的衍射路径和直接路径之间的长度差小于测量设置的空间分辨率,因此它不会引入明显的范围误差。

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