基于时域UTD技术的超宽带多径信道模型

R. Yao, G. Gao, Zheng Chen, Wenwu Zhu
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引用次数: 39

摘要

本文建立了一种基于时域均匀几何衍射理论(TD-UTD)技术的确定性超宽带多径信道模型。该解决方案包括几何光学(GO)和UTD的三种基本射线机制,即定向射线、来自有损表面的多反射射线和来自有损边缘的衍射射线。由于分析是在时域电磁场中进行的,与统计模型不同,UWB信道模型方法不仅可以确定信号衰减,还可以确定UWB信号在多径环境中传播时的脉冲形状和脉冲持续时间等波形畸变。文中给出了一个综合考虑信道冲击响应和收发天线冲击响应的通用冲击响应模型。然后给出了时域单反射射线的解析描述以及水平偏振和垂直偏振的反射系数。时域多重反射射线由具有不同电磁特性的有损表面的单个反射系数的卷积表示。时域衍射射线用时域衍射系数和反射系数来描述。最后给出了典型办公室内的仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UWB multipath channel model based on time-domain UTD technique
In this paper, we develop a deterministic UWB multipath channel model based on time-domain uniform geometrical theory of diffraction (TD-UTD) technique. The solution includes the three basic ray mechanisms of geometrical optics (GO) and UTD, i.e., directed ray, multireflected rays from lossy surfaces, and diffracted ray from lossy edge. Since the analysis is conducted in time-domain electromagnetic field, unlike statistical model, the approach for UWB channel model can determine not only signal attenuation, but also waveform distortion in terms of pulse shape and pulse duration when the UWB signal propagates in multipath environments. Here, a generic impulse response model by taking into account channel impulse response as well as transmitter and receiver antenna impulse responses is given. Then, the analytical description of time-domain single reflected ray and reflection coefficients of horizontal polarization and vertical polarization is provided. The time-domain multiple reflected rays are expressed by the convolution of individual reflection coefficient from lossy surfaces with different electromagnetic properties. The time-domain diffraction ray is described as time-domain diffraction coefficients and reflection coefficient. Finally, the simulation results in a typical office room are presented.
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