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Quasi-Orthogonal Space-Time Block Codes with Full Diversity

机译:具有全分集的准正交空时分组码

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摘要

Space-time block codes from orthogonal designs proposed by Alamouti, and Tarokh-Jafarkhani-Calderbank have attracted much attention lately due to their fast maximum-likelihood (ML) decoding and full diversity. However, the maximum symbol transmission rate of a space-time block code from complex orthogonal designs for complex constellations is only 3/4 for three and four transmit antennas. Recently, Jafarkhani, and Tirkkonen-Boariu-Hottinen proposed space-time block codes from quasi-orthogonal designs, where the orthogonality is relaxed to provide higher symbol transmission rates. With the quasi-orthogonal structure, these codes still have a fast ML decoding algorithm, but do not have the full diversity. The performance of these codes is better than that of the codes from orthogonal designs at low SNR, but worse at high SNR. This is due to the fact that the slope of the BER-SNR curve depends on the diversity. In this paper, we design quasi-orthogonal space-time block codes with full diversity by properly choosing the signal constellations. In particular, we propose that half of the symbols in a quasi-orthogonal design are from a signal constellation A and another half of them are optimal selections from the rotated constellation e~(jφ) A. The optimal rotation angles φ are obtained for some commonly used signal constellations. The resulting codes have both full diversity and fast ML decoding. Simulation results show that the proposed codes outperform the codes from orthogonal designs at both low and high SNRs.
机译:最近,Alamouti和Tarokh-Jafarkhani-Calderbank提出的正交设计中的时空分组码由于其快速的最大似然(ML)解码和全分集而备受关注。但是,对于三个和四个发射天线,复杂星座图的复杂正交设计的空时分组码的最大符号传输速率仅为3/4。最近,Jafarkhani和Tirkkonen-Boariu-Hottinen从准正交设计中提出了时空分组码,其中正交性得到了放宽以提供更高的符号传输速率。通过准正交结构,这些代码仍具有快速的ML解码算法,但不具有完整的分集。在低SNR时,这些代码的性能优于正交设计的代码,但在高SNR时性能较差。这是由于BER-SNR曲线的斜率取决于分集这一事实。在本文中,我们通过适当选择信号星座图来设计具有完全分集的准正交时空分组码。特别地,我们提出准正交设计中的符号中的一半来自信号星座A,另一半是来自旋转星座e〜(jφ)A的最佳选择。常用的信号星座图。生成的代码具有完全的分集和快速的ML解码。仿真结果表明,所提出的编码在低信噪比和高信噪比下均优于正交设计的编码。

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