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Time-Variant Radio Channel Characterization and Modelling of Vegetation Media at Millimeter-Wave Frequency

机译:毫米波频率下植被的时变无线电信道表征与建模

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摘要

Results of an extensive measurement campaign to characterize and model dynamic effects on the radio channel in vegetation media at 40 GHz, are presented. Using two small trees in an anechoic chamber, narrowband fast-fading measurements, utilizing co-polarized signals, were conducted to obtain radio channel characterization. This was performed as a function of the bi-static scattering angle, wind speed, wind incidence, and tree species. Furthermore, a modelling methodology is investigated and assessed as to its feasibility as a means to model vegetation dynamics effects on propagation. A radio channel model based on a simplified set of Markovian parameters, is proposed. The model is representative of the radio signal in the three main identified propagation regions around a vegetation volume as a mean to satisfactorily model highly time-variant radio signals. The propagation regions considered are receiver angular sections (in the azimuth plane) around the tree, where the received signal behaves distinctly for each region. Model validation results are presented using one of the tree species.
机译:提出了一项广泛的测量活动的结果,以表征和模拟40 GHz植被介质中无线电信道的动态影响。在消声室中使用两棵小树,利用同极化信号进行窄带快速衰落测量,以获得无线电信道特征。这是根据双静态散射角,风速,风入射和树木种类进行的。此外,研究并评估了一种建模方法学的可行性,该方法可作为一种模拟植被动力学对繁殖的影响的手段。提出了一种基于简化马尔可夫参数集的无线信道模型。该模型代表围绕植被体积的三个主要已识别传播区域中的无线电信号,可以令人满意地对高时变无线电信号进行建模。所考虑的传播区域是围绕树的接收器角度部分(在方位平面中),其中接收信号对于每个区域的表现都不同。使用树种之一显示模型验证结果。

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