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Characterization of Measured Indoor Off-Body MIMO Channels with Correlated Fading, Correlated Shadowing and Constant Path Loss

机译:具有相关衰落,相关阴影和恒定路径损耗的测量室内离体MIMO信道的表征

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Indoor off-body wireless MIMO links between a mobile user equipped with wearable textile patch antennas and a fixed base station exhibit specific channel behavior due to the near presence and movements of the human body. Therefore, they require a dedicated channel model that captures the effects of correlated small-scale Rayleigh fading and correlated lognormal shadowing. A methodology is presented to construct such a model, allowing to predict the bit error characteristics and channel capacity curves based on the shadowing and fading correlation matrices that are extracted from channel measurements. It is shown that by separating shadowing, including effects caused by movement and reorientation of the human body, from small-scale fading, the main mechanisms of the off-body communication link are accurately captured by the model. A clear dependence of the shadowing correlation values on the physical layout of the antenna system is found. In our measurements, shadowing is not significantly decorrelated by polarization diversity or front-to-back diversity whereas the small-scale fading is clearly decorrelated. From the model, MIMO channel realizations with identical bit error rate and channel capacity characteristics as the measured channel can be quickly generated for link emulation purposes.
机译:配备有可穿戴纺织品贴片天线的移动用户与固定基站之间的室内体外无线MIMO链路由于人体的近在移动和移动而表现出特定的信道行为。因此,他们需要一个专用的信道模型来捕获相关的小范围瑞利衰落和相关的对数正态阴影的影响。提出了一种构建这种模型的方法,该方法允许基于从信道测量中提取的阴影和衰落相关矩阵来预测误码特性和信道容量曲线。结果表明,通过将阴影(包括由人体的运动和重新定向引起的影响)与小规模的衰落分开,模型可以准确地捕获体外通信链接的主要机制。发现阴影相关值与天线系统的物理布局有明显的相关性。在我们的测量中,阴影与极化分集或前后分集并没有显着的去相关,而小规模衰落显然与去相关。根据该模型,可以快速生成具有与被测信道相同的误码率和信道容量特性的MIMO信道实现,以进行链路仿真。

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