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Multiplexing efficiency for MIMO antenna-channel impairment characterisation in realistic multipath environments

机译:现实多径环境中MIMO天线信道损伤表征的复用效率

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Multiple-input multiple-output (MIMO) systems in multipath environments suffer from high correlations (in the presence of small angular spreads of propagation waves and similar antenna patterns) and power imbalances (due to cross-polarisation discrimination of the propagation channel and possibly different antenna efficiencies). A simple performance metric that takes into account of the antenna-channel impairments on the MIMO system will be of great value for MIMO antenna characterisations. In this study, a generalised multiplexing efficiency (ME) is derived, which takes into account antenna pattern and polarisation mismatches in arbitrary multipath environments. In addition, it is shown that the generalised ME can characterise not only the throughput (or coded error rate) degradation but also the degradation of uncoded error rate. For verifying the generalised ME, the authors use both the correlation-based channel model (where correlations and power imbalances can be readily specified) and the more realistic WINNER+channel model (where correlations and power imbalances have to be indirectly controlled by changing the antenna setup).
机译:多径环境中的多输入多输出(MIMO)系统具有较高的相关性(存在传播波的小角度扩展和相似的天线方向图)和功率不平衡(由于传播信道的交叉极化歧视而可能有所不同)天线效率)。一个简单的性能指标,考虑到MIMO系统上的天线信道损伤,对于MIMO天线表征将具有巨大的价值。在这项研究中,得出了一种通用的复用效率(ME),其中考虑了任意多径环境中的天线方向图和极化失配。另外,示出了广义ME不仅可以表征吞吐量(或编码错误率)降级,而且可以表征未编码错误率的降级。为了验证广义ME,作者使用了基于相关的信道模型(可以容易地指定相关和功率不平衡)和更现实的WINNER +信道模型(其中必须通过更换天线来间接控制相关和功率不平衡)设定)。

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