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Efficient quasi-orthogonal space-time block codes for five and six transmit antennas

机译:五个和六个发射天线的高效准正交空时分组码

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Space-time block codes offer transmit diversity in multiple antenna systems. Orthogonal and quasi-orthogonal space-time block codes have been developed for improving the performance of wireless communication systems. Orthogonal designs have full diversity and allow symbol-wise maximum likelyhood decoding. However, their code rate is strictly less than one for more than two transmit antennas. Quasi-orthogonal designs achieve a code rate of one, but diversity is sacrificed and decoding becomes more complex. Signal constellation rotation based quasi-orthogonal codes provide full diversity, but the code rate depends on the orthogonal design. This paper proposes two new constellation-rotation based quasi-orthogonal space-time block codes, one for five transmit antennas and one for six transmit antennas. The proposed codes achieve full diversity as well as a code rate of one. The new codes are presented with extensive simulation results to back the superiority of the codes developed. Our improved codes are found to perform better than the existing codes.
机译:空时分组码在多个天线系统中提供发射分集。已经开发了正交和准正交的时空分组码,以提高无线通信系统的性能。正交设计具有充分的多样性,并允许按符号进行最大似然解码。但是,对于两个以上的发射天线,它们的编码率严格小于一。准正交设计的编码率为1,但是牺牲了分集,解码也变得更加复杂。基于信号星座旋转的准正交码可提供完全的分集,但码率取决于正交设计。本文提出了两个新的基于星座旋转的准正交空时分组码,一个用于五个发射天线,一个用于六个发射天线。所提出的代码实现了完全的分集以及码率为1。新代码具有广泛的仿真结果,以支持已开发代码的优越性。我们发现改进后的代码比现有代码具有更好的性能。

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