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Quasi-orthogonal space–frequency and space–time–frequency block codes with modified performance and simplified decoder

机译:具有改进性能和简化解码器的准正交空频和空时空分组码

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摘要

Due to their superior performance and moderate computational complexity, quasi-orthogonal space-frequency block codes (QOSFBCs) and quasi-orthogonal space-time-frequency block codes (QOSTFBCs) are among prime candidates for implementation in multiple-input multiple-output communications systems. Originally, these codes were introduced for two transmit antennas and it is proved that they are full-diversity within channels with equal-power profile and integer delays. In this study, first, the authors generalise the construction of QOSFBCs and QOSTFBCs for arbitrary number of transmit antennas. Then, they provide the theoretical proof that these codes are full-diversity for any arbitrary number of transmit antennas and any arbitrary delay and power profiles. Furthermore, they prove that the coding advantage of these codes is decomposed into two distinct parts, one of which represents the effect of the channel and the other represents the effect of the precoder. By optimising these two parts, they propose a modified version of QOSFBCs and QOSTFBCs which outperforms the latest space-frequency block codes and space-time-frequency block codes in the literature according to the analytical results and support of simulation results. Finally, they propose a new suboptimum linear decoder for the QOSFBCs and the QOSTFBCs which could achieve almost the same performance as the maximum-likelihood decoder for large number of subcarriers.
机译:由于其优异的性能和适度的计算复杂性,准正交空频分组码(QOSFBC)和准正交空时频分组码(QOSTFBC)是在多输入多输出通信系统中实现的主要候选对象。最初,这些代码是为两个发射天线引入的,并证明它们在具有相同功率分布和整数延迟的信道内是全分集的。在这项研究中,首先,作者概括了任意数量的发射天线的QOSFBC和QOSTFBC的构造。然后,它们提供了理论证明,即这些代码对于任意数量的发射天线以及任意延迟和功率分布都是完全分集的。此外,他们证明这些代码的编码优势被分解为两个不同的部分,其中一个代表信道的影响,另一个代表预编码器的影响。通过优化这两部分,他们提出了QOSFBC和QOSTFBC的改进版本,根据分析结果和仿真结果的支持,它们的性能优于文献中最新的空频分组码和空时频分组码。最后,他们为QOSFBC和QOSTFBC提出了一种新的次最佳线性解码器,该解码器可实现与针对大量子载波的最大似然解码器几乎相同的性能。

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