Modelling of Non-WSSUS Channels with Time-Variant Doppler and Delay Characteristics

M. Pätzold, C. Gutiérrez
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引用次数: 15

Abstract

This paper deals with the modelling of non-wide-sense stationary uncorrelated scattering (non-WSSUS) channels in which the angles of arrival (AOAs), Doppler frequencies, and propagation delays vary with time. Starting from a geometrical model in which the mobile station (MS) travels along a predefined path with time-variant velocity, it is shown how the parameters of the non-WSSUS model can be computed analytically assuming that the scatterers are fixed. One of the key results of our analysis is that the time-variant Doppler frequencies and the time-variant propagation delays of WSSUS and non-WSSUS channels are connected by a fundamental relationship. Furthermore, the time-variant channel transfer function of the non-WSSUS channel model is derived. In addition, general expressions are presented for the correlation functions in the time and frequency domains. Moreover, it is shown that the proposed non-WSSUS channel model is consistent w.r.t. the mean Doppler shift, Doppler spread, mean propagation delay, and delay spread. The proposed concept is of fundamental importance for the design of physically sound wideband channel models under non-stationary propagation conditions.
具有时变多普勒和延迟特性的非wssus信道建模
本文研究了非广义平稳不相关散射(non-WSSUS)信道的模型,其中到达角(AOAs)、多普勒频率和传播延迟随时间变化。从移动台沿预定路径以时变速度移动的几何模型出发,给出了在散射体固定的前提下,如何解析计算非wssus模型的参数。我们分析的一个关键结果是,WSSUS和非WSSUS信道的时变多普勒频率和时变传播延迟之间存在一种基本关系。进一步推导了非wssus信道模型的时变信道传递函数。此外,给出了相关函数在时域和频域的一般表达式。此外,所提出的非wssus信道模型与平均多普勒频移、多普勒扩频、平均传播延迟和延迟扩频是一致的。所提出的概念对于设计非平稳传播条件下物理健全的宽带信道模型具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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