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Full-diversity high-rate non-coherent unitary STBCs: New designs and performance

机译:全分集高速率非相干单一STBC:新设计和性能

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In this paper, we propose new non-coherent spacetime block code (STBC) designs, which achieve full transmit diversity as well as high rates. We first present a search procedure to generate full-diversity non-coherent unitary space-time codebooks for any number of transmit antennas (nt) and time slots (T ¿ 2nt), using radial coordinates of points lying on the surface of a sphere in RT-nt. The search method generates codebooks having a specified minimum chordal distance, which allows flexibility in achieving coding gain. Further, we propose another unitary design using circulant matrices for any nt, by restricting the search only to suitable constellation sets in R2 for the case of T = 2nt. For the latter design, we present two different optimizations; i) to maximize the minimum chordal distance, and ii) to maximize the expected chordal distance. The proposed designs use an analytical design criterion which guarantees full diversity. The proposed designs are shown to outperform Jing and Hassibi codes reported previously in the literature.
机译:在本文中,我们提出了新的非相干时空分组码(STBC)设计,该设计可实现完全的发射分集和高速率。我们首先提出一种搜索程序,以针对任意数量的发射天线(n t )和时隙(TƒÂÃ2n)生成全集非相干unit时空码本。 t ),使用R T-nt 中位于球体表面的点的径向坐标。该搜索方法生成具有指定的最小弦距的码本,从而可以灵活地实现编码增益。此外,对于T = 2n 2 中的合适星座集中,我们提出了针对任何n t 使用循环矩阵的另一种整体设计。 > t 。对于后一种设计,我们提出了两种不同的优化方法: i)最大化最小弦长,并且ii)最大化期望弦长。拟议的设计使用分析设计准则,以保证完全的多样性。拟议的设计显示出优于文献中先前报道的Jing和Hassibi编码。

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