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A new full-rate full-diversity orthogonal space-time block coding scheme

机译:一种新的全速率全分集正交空时分组编码方案

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摘要

In this work, we present a new space-time orthogonal coding scheme with full-rate and full-diversity. The proposed space-time coding scheme can be used on quaternary phase-shift keyed (QPSK) transceiver systems with four transmit antennas and any number of receivers. An additional feature is that the coded signals transmitted through all four transmit antennas do not experience any constellation expansion. The performance of the proposed coding scheme is studied in comparison with that of 1/2-rate full-diversity orthogonal space-time code, quasi-orthogonal code, as well as constellation-rotated quasi-orthogonal code. Our study shows that the proposed coding scheme offers full rate and outperforms the 1/2-rate orthogonal codes as well as full-rate quasi-orthogonal codes when the signal-to-noise increases. Compared to the constellation-rotated quasi-orthogonal codes (the improved QO scheme), the newly proposed code has the advantage of not expanding the signal constellation at each transmit antenna. The performance of the newly proposed code is comparable to that of the improved QO scheme.
机译:在这项工作中,我们提出了一种具有全速率和全分集的新的空时正交编码方案。所提出的时空编码方案可以在具有四个发射天线和任意数量的接收器的四相相移键控(QPSK)收发器系统上使用。另一个特点是,通过所有四个发射天线发射的编码信号不会经历任何星座扩展。与1/2速率全分集正交空时码,准正交码以及星座旋转准正交码相比,研究了所提出的编码方案的性能。我们的研究表明,当信噪比增加时,提出的编码方案可提供全速率,并且性能优于1/2速率正交码以及全速率准正交码。与星座旋转准正交码(改进的QO方案)相比,新提出的码具有不扩展每个发射天线的信号星座的优势。新提出的代码的性能与改进的QO方案的性能相当。

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