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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >New Minimum Decoding Complexity Quasi-Orthogonal Space-Time Block Code for 8 Transmit Antennas
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New Minimum Decoding Complexity Quasi-Orthogonal Space-Time Block Code for 8 Transmit Antennas

机译:用于8个发射天线的新的最小解码复杂度拟正交空时分组码

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In this paper, a new full-rate space-time block code (STBC) possessing a quasi-orthogonal (QO) property is proposed for QAM and 8 transmit antennas. This code is designed by serially concatenating a real constellation-rotating precoder with the Alamouti scheme. The QO property enables ML decoding to be done with joint detection of only four real symbols like the conventional minimum decoding complexity QO-STBC (MDC-QO-STBC). However, the proposed code is guaranteed to achieve full spatial diversity for general QAM unlike the MDC-QO-STBC which is specifically presented for only 4-QAM. By computer simulation results, we show that the proposed code exhibits the identical and slightly degraded error performance with the MDC-QO-STBC for 4-QAM and the Sharma's QO-STBC for 4 and 16-QAM, respectively. Finally, we present a new modified scheme of the original code so that there is no any discontinuity of transmission at each transmit antenna, without any loss of error performance.
机译:本文针对QAM和8个发射天线,提出了一种具有准正交(QO)特性的全速率空时分组码(STBC)。该代码是通过将真正的星座旋转预编码器与Alamouti方案串行连接而设计的。 QO属性使ML解码仅通过联合检测四个实数符号即可完成,例如常规的最小解码复杂度QO-STBC(MDC-QO-STBC)。但是,与仅针对4-QAM专门提出的MDC-QO-STBC不同,所保证的代码可保证为一般QAM实现完全的空间分集。通过计算机仿真结果,我们表明,所提出的代码分别与4-QAM的MDC-QO-STBC和4和16-QAM的Sharma's QO-STBC表现出相同且略有降低的错误性能。最后,我们提出了一种原始代码的新修改方案,以便在每个发射天线处都不会出现传输中断,并且不会降低错误性能。

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