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A novel and efficient hybrid model of radio multipath-fading channels in indoor environments

机译:室内环境中无线多径衰落信道的新型高效混合模型

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摘要

Presents a novel and efficient hybrid model combining a two-dimensional (2-D) site-specific model and a statistical model to characterize multipath fading in indoor environments. The site-specific model describes the propagation effects of interior walls and building walls. The latter model characterizes the effect of scattering due to rough surface boundaries and/or randomly positioned scatterers such as furniture and personnel, which significantly affects small-scale fading. The hybrid model is computationally efficient since only the 2-D site-specific model is needed. In addition to accurately predicting mean field strength, the model can effectively quantify the relative mean contribution of diffused scattering with a factor r. The factor is also an effective index to quantify the cluttering strength of the propagation environment: 1) light-cluttering situation r≤0.35 and 2) heavycluttering situation r≥0.65. Some blind tests validate the effectiveness of the model. A large amount of experimental data for 2.44-GHz radio at many different sites shows that a Nakagami distribution describes the fading distribution well.
机译:提出了一种新颖且有效的混合模型,该模型结合了二维(2-D)特定于站点的模型和统计模型来表征室内环境中的多径衰落。特定于站点的模型描述了内墙和建筑物墙的传播效果。后一种模型表征了由于粗糙的表面边界和/或随意放置的散射体(例如家具和人员)引起的散射效应,这会严重影响小规模的褪色。混合模型的计算效率很高,因为仅需要二维站点特定模型。除了准确预测平均场强之外,该模型还可以有效地量化系数为r的散射的相对平均贡献。该因素也是量化传播环境的杂波强度的有效指标:1)杂波情况r≤0.35,2)杂波情况r≥0.65。一些盲测验证了模型的有效性。在许多不同地点的大量2.44 GHz无线电实验数据表明,Nakagami分布很好地描述了衰落分布。

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