Channel Orthogonalizing Precoder for Open-Loop QO-STBC Systems

Heejin Kim, Heunchul Lee, Inkyu Lee
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Abstract

This paper proposes a new preprocessing scheme for rate-one quasi-orthogonal space-time block code (QO-STBC), which requires no channel state information at the transmitter. We consider QO-STBCs in real domain so as to utilize the real-valued multidimensional constellation. First, we derive a precoding matrix which makes the effective channel matrix of QO-STBC column-wise orthogonal. Surprisingly, the proposed scheme provides the channel gains identical to the singular values of the channel matrix of STBCs. Since singular value decomposition based precoding method provides better performance than other conventional maximum-likelihood decoding method in coded systems, the proposed scheme outperforms other STBC schemes in coded systems without feedback information, while reducing the decoding complexity dramatically. Second, we employ the rotated multidimensional constellation in order to achieve full diversity in uncoded systems. Unlike the previous works where heuristic approaches should be needed to obtain solutions in QO-STBC systems with more than four transmit antennas, the proposed precoding combined with the rotated multidimensional constellation provides an optimal solution based on analysis regardless of the number of transmit antennas.
开环QO-STBC系统信道正交化预编码器
提出了一种不需要发送端信道状态信息的准正交空时分组码(QO-STBC)预处理方案。为了利用实值多维星座,我们在实域考虑qos - stbc。首先,我们推导了一个使qos - stbc有效信道矩阵列正交的预编码矩阵。令人惊讶的是,该方案提供了与stbc信道矩阵奇异值相同的信道增益。由于基于奇异值分解的预编码方法在编码系统中比其他传统的最大似然译码方法具有更好的性能,因此该方案在无反馈信息的编码系统中优于其他STBC方案,同时显著降低了译码复杂度。其次,我们采用旋转多维星座来实现非编码系统的完全多样性。与以往的工作不同,在具有四个以上发射天线的qos - stbc系统中需要启发式方法来获得解,所提出的预编码结合旋转多维星座提供了基于分析的最优解,而不考虑发射天线的数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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