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Definition and Analysis of Quasi-Stationary Intervals of Mobile Radio Channels - Invited Paper

机译:移动无线电信道准平稳间隔的定义和分析-邀请论文

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This paper presents a non-wide-sense stationary uncorrelated scattering (non-WSSUS) model which takes accurately into account that the Doppler frequencies and propagation delays vary with time if the mobile station (MS) moves. Another feature of the proposed channel model is that the MS can change its velocity along the route. The result is that the Doppler spread and the delay spread deviate from their initial values with increasing time. This effect motivates the definition of quasi-stationary intervals. The lengths of these intervals will be analysed in terms of the velocity parameters. Our analysis shows that real- world channels can be quasi-stationary but not wide-sense stationary (WSS), neither in the time domain nor in the frequency domain. This implies that the generally accepted WSS and WSSUS assumptions are not fulfilled in practice, even not if the travelling distance is short.
机译:本文提出了一种非广义静止不相关散射(non-WSSUS)模型,该模型准确地考虑了如果移动台(MS)移动时多普勒频率和传播延迟随时间变化的情况。所提出的信道模型的另一个特征是MS可以沿着路线改变其速度。结果是多普勒扩展和延迟扩展随时间的增加而偏离其初始值。这种效果激发了准平稳间隔的定义。这些间隔的长度将根据速度参数进行分析。我们的分析表明,在时域和频域中,现实世界的信道都可以是准平稳的,但不能是广义的平稳(WSS)。这意味着即使行进距离很短,实践中也无法满足公认的WSS和WSSUS假设。

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