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Optimal precoding for orthogonalized spatial multiplexing in closed-loop MIMO systems

机译:闭环MIMO系统中正交空间复用的最优预编码

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摘要

In this paper, we propose a new precoding algorithm for orthogonalized spatial multiplexing (OSM) systems over flatfading multiple-input multiple-output (MIMO) channels. The OSM scheme was recently introduced for closed-loop MIMO systems which allows single symbol decodable maximum likelihood detection. To further improve the performance of the OSM system, we propose a new precoding method by maximizing the minimum Euclidean distance between constellation points in the effective channel. In order to efficiently identify the parameters of a precoder which maximizes the minimum distance, we introduce a partitioning approach. Through analysis, it is shown that one real value parameter and two bits are required for feedback information for precoding in 16-QAM systems. Simulation results demonstrate that our algorithm provides 9dB and 7.5dB gains at a bit error rate (BER) of 10驴4 over the conventional OSM systems for 4-QAM and 16-QAM, respectively. We also confirm that the performance of the proposed scheme is the same as that of the optimum closed-loop MIMO systems in terms of the minimum distance. Consequently, our precoding algorithm significantly improves the system performance with a small increase of feedback amount.
机译:在本文中,我们提出了一种用于平坦淡入多输入多输出(MIMO)信道上的正交空间复用(OSM)系统的新预编码算法。最近针对闭环MIMO系统引入了OSM方案,该系统允许单符号可解码的最大似然检测。为了进一步提高OSM系统的性能,我们通过最大化有效信道中星座点之间的最小欧几里得距离,提出了一种新的预编码方法。为了有效地识别最大化最小距离的预编码器的参数,我们引入了一种分区方法。通过分析表明,对于16-QAM系统中的预编码反馈信息,需要一个实数值参数和两位。仿真结果表明,与传统OSM系统的4-QAM和16-QAM相比,我们的算法在10驴4的误码率(BER)下可提供9dB和7.5dB的增益。我们还确认,就最小距离而言,该方案的性能与最佳闭环MIMO系统的性能相同。因此,我们的预编码算法通过少量增加反馈量就可以显着提高系统性能。

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