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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Low-Complexity Massive MIMO Detectors Under Spatial Correlation and Channel Error Estimates
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Low-Complexity Massive MIMO Detectors Under Spatial Correlation and Channel Error Estimates

机译:低复杂性大规模MIMO探测器在空间相关性和信道错误估计下

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The performance, complexity and effectiveness of various massive MIMO (M-MIMO) detectors are analyzed operating under highly spatial correlated uniform planar arrays (UPA) channels. In such context, M-MIMO systems present a considerable performance degradation and also, in some cases, an increased complexity. Considering this challenging, but realistic practical scenario, various sub-optimal M-MIMO detection structures are evaluated in terms of complexity and bit error rate (BER) performance trade-off. Specifically, the successive interference cancellation, lattice reduction (LR) and likelihood ascent search (LAS) schemes, as well as a hybrid version combining such structures with conventional linear MIMO detection techniques are comparatively investigated, aiming to improve performance. Hence, to provide a comprehensive analysis, we consider the number of antennas varying in a wide range (from conventional to massive MIMO condition), as well as low and high modulation orders, aiming to verify the potential of each MIMO detection technique according to its performance-complexity trade-off. We have also studied the correlation effect when both transmit and receiver sides are equipped with UPA antenna configurations. The BER performance is verified under different conditions, varying the array configurations, combining the detection techniques, increasing the number of antennas and/or the modulation order, especially aiming a near M-MIMO condition, i.e. up to 64x64 and 121x121 antennas has been considered. The aggregated LAS technique has demonstrated good performance in scenarios with high number of antennas, while LR and OSIC operates better in high correlated arrangements.
机译:在高度空间相关均匀平面阵列(UPA)通道下进行各种大规模MIMO(M-MIMO)检测器的性能,复杂性和有效性。在这种情况下,M-MIMO系统存在相当大的性能下降,并且在某些情况下,在一些情况下增加了复杂性。考虑到这一具有挑战性,但实际的实际情况,根据复杂性和误码率(BER)性能权衡来评估各种次优M-MIMO检测结构。具体地,连续的干扰消除,晶格还原(LR)和似然上升搜索(LAS)方案以及与传统线性MIMO检测技术相结合的这种结构的混合版本进行了相对调查,旨在提高性能。因此,为了提供全面的分析,我们考虑在宽范围内变化的天线数量(传统到大规模的MIMO条件),以及低和高调制订单,旨在根据其验证每个MIMO检测技术的潜力性能复杂性权衡。当发射和接收器侧配有UPA天线配置时,我们还研究了相关效果。在不同的条件下验证BER性能,改变阵列配置,组合检测技术,增加天线的数量和/或调制顺序,特别是针对接近M-MIMO条件,即高达64×64和121x121天线。 。聚合的LAS技术在具有大量天线的情况下表现出良好的性能,而LR和OSIC在高相关布置中运行得更好。

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