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Two-Dimensional Evolutionary Spectrum Approach to Nonstationary Fading Channel Modeling

机译:非平稳衰落信道建模的二维进化谱方法

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Broadband mobile communication systems experience fading over a wide frequency band, which induces severe intersymbol interference and drastic channel gain fluctuation, resulting in a time–frequency doubly selective fading channel gain. Most existing works on fading channel modeling assume wide-sense stationarity with respect to (w.r.t.) time and uncorrelated scattering w.r.t. delay. However, due to the time-varying movement of mobile terminals, fading is usually nonstationary w.r.t. time, i.e., the Doppler spectrum is nonstationary. In addition, electromagnetic signals reflected/scattered from the same clustter/object are correlated and may induce nonstationarity w.r.t. delay due to time-varying cluster environments, e.g., wind causes the movement of leaves, resulting in time-varying scattering of leaves. To model nonstationary broadband mobile fading channels, this paper introduces a two-dimensional evolutionary spectrum (2-D ES) approach, which is compatible with the power spectral density of a stationary process. Based on the 2-D ES, we also propose an estimation method to estimate the 2-D ES parameters from a trace (sample path) of a fading process. Furthermore, we show how to set up a simulator to generate a 2-D stationary or nonstationary fading process according to our developed 2-D ES framework. Using the 2-D ES approach, we analyze a class of Nakagami- channels which is nonstationary in both the time and frequency domains. Two examples are used to show the accuracy of our developed 2-D ES-based channel modeling approach.
机译:宽带移动通信系统在较宽的频带上会经历衰落,这会导致严重的符号间干扰和急剧的信道增益波动,从而导致时频双重选择性衰落信道增益。大多数有关衰落信道建模的现有工作都假设相对于(w.r.t.)时间具有广泛的平稳性,并且具有不相关的w.r.t.散射。延迟。然而,由于移动终端的时变运动,衰落通常是不平稳的。时间,即多普勒频谱是不稳定的。另外,从同一个簇/物体反射/散射的电磁信号是相关的,并且可能引起不平稳性。随时间变化的群集环境造成的延迟,例如风导致树叶运动,从而导致树叶随时间变化。为了对非平稳宽带移动衰落信道建模,本文引入了二维进化谱(2-D ES)方法,该方法与固定过程的功率谱密度兼容。基于2-D ES,我们还提出了一种估计方法,用于根据衰落过程的迹线(样本路径)估计2-D ES参数。此外,我们展示了如何根据我们开发的2-D ES框架设置模拟器以生成2-D固定或非固定衰落过程。使用二维ES方法,我们分析了一类Nakagami-channel,该Nakagami-channel在时域和频域均不稳定。使用两个示例来说明我们开发的基于2D ES的通道建模方法的准确性。

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