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Experimental Characterization of Multipath Channels for Ultra-Wideband Systems in Indoor Environment Based on Time Dispersion Parameters

机译:基于时间色散参数的室内环境超宽带系统多径信道的实验表征

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摘要

In this paper, the multipath effects for UWB channel is presented. The time dispersion parameters; mainly root mean square (RMS) delay spread and mean excess delay are used to characterize the multipath UWB channel. The multipath power; namely multipath gain (MG) parameter is used to characterize the multipath components for line of sight (LOS) and non-line of sight (NLOS) scenarios. All these parameters are extracted from UWB channel measurements in indoor environments. Furthermore, the variation of UWB channel in NLOS scenario is studied within very small movement. Two types of antennas, omnidirectional and directional antennas are used to investigate the multipath effects in UWB channel. The results show that the correlation between RMS delay spread and MG is low for LOS and NLOS scenarios. For very small movement NLOS scenario, the findings are reported that the multipath channels change slowly till 8 cm, however, they have significant changes for 20 cm. It shows that the correlation between investigated parameter is high.
机译:在本文中,提出了UWB通道的多径效应。时间分散参数;主要是根均线(RMS)延迟扩散和平均过量延迟用于表征多径UWB通道。多径功率;即,MultiPath Gain(MG)参数用于表征视图(LOS)和非视线(NLOS)方案的多径组件。所有这些参数都从室内环境中的UWB通道测量中提取。此外,在非常小的运动中研究了NLOS场景中的UWB信道的变化。两种类型的天线,全向和定向天线用于研究UWB通道中的多径效应。结果表明,对于LOS和NLOS场景,RMS延迟扩展和MG之间的相关性低。对于非常小的运动NLOS场景,据报道,多路径通道速度变化至8厘米,但是,它们具有20厘米的显着变化。它表明研究参数之间的相关性高。

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