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Analysis of Differential Orthogonal Space–Time Block Codes Over Semi-Identical MIMO Fading Channels

机译:半相同MIMO衰落信道上差分正交空时分组码的分析

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We study the performance of differential orthogonal space-time block codes (OSTBC) over independent and semi-identically distributed block Rayleigh fading channels. In this semiidentical fading model, the channel gains from different transmit antennas to a common receive antenna are identically distributed, but the gains associated with different receive antennas are nonidentically distributed. Arbitrary fluctuation rates of the fading processes from one transmission block to another are considered. We first derive the optimal symbol-by-symbol differential detector, and show that the conventional differential detector is suboptimal. We then derive expressions of exact bit-error probabilities (BEPs) for both the optimal and suboptimal detectors. The results are applicable for any number of receive antennas, and any number of transmit antennas for which OSTBCs exist. For two transmit antennas, explicit and closed-form BEP expressions are obtained. For an arbitrary number of transmit antennas, a Chernoff bound on the BEP for the optimal detector is also derived. Our results show that the semi-identical channel statistics degrade the error performance of differential OSTBC, compared with the identical case. Also, the proposed optimal detector substantially outperforms the conventional detector when the channel fluctuates rapidly. But in near-static fading channels, the two detectors have similar performances
机译:我们研究了独立和半相同分布的块瑞利衰落信道上差分正交空时分组码(OSTBC)的性能。在这种半同衰落模型中,从不同的发射天线到一个公共接收天线的信道增益被均匀地分布,但是与不同的接收天线相关的增益却被不均匀地分布。考虑从一个传输块到另一传输块的衰落过程的任意波动率。我们首先得出最优的逐符号差分检测器,并表明常规差分检测器不是最优的。然后,我们针对最佳和次优检测器得出精确的误码率(BEP)的表达式。该结果适用于存在OSTBC的任何数量的接收天线和任何数量的发射天线。对于两个发射天线,可以获得显式和闭式BEP表达式。对于任意数量的发射天线,还得出了最佳检测器在BEP上的切尔诺夫边界。我们的结果表明,与相同情况相比,半相同信道统计信息会降低差分OSTBC的错误性能。而且,当信道快速波动时,提出的最佳检测器明显优于常规检测器。但是在接近静态的衰落信道中,两个检测器的性能相似

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