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High-Rate Space-Time Coded Large MIMO Systems: Low-Complexity Detection and Performance

机译:高速空间编码大型MIMO系统:低复杂性检测和性能

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Large MIMO systems with tens of antennas in each communication terminal using full-rate non-orthogonal space-time block codes (STBC) from Cyclic Division Algebras (CDA) can achieve the benefits of both transmit diversity as well as high spectral efficiencies. Maximum-likelihood (ML) or near-ML decoding of these large-sized STBCs at low complexities, however, has been a challenge. In this paper, we establish that near-ML decoding of these large STBCs is possible at practically affordable low complexities. We show that the likelihood ascent search (LAS) detector, reported earlier by us for V-BLAST, is able to achieve near-ML uncoded BER performance in decoding a 32 × 32 STBC from CDA, which employs 32 transmit antennas and sends 32{sup}2 = 1024 complex data symbols in 32 time slots in one STBC matrix (i.e., 32 data symbols sent per channel use). In terms of coded BER, with a 16 × 16 STBC, rate-3/4 turbo code and 4-QAM (i.e., 24 bps/Hz), the LAS detector performs close to within just about 4 dB from the theoretical MIMO capacity. Our results further show that, with LAS detection, information lossless (ILL) STBCs perform almost as good as full-diversity ILL (FD-ILL) STBCs. Such low-complexity detectors can potentially enable implementation of high spectral efficiency large MIMO systems that could be considered in wireless standards.
机译:具有来自循环分割代数(CDA)的全速率非正交空间块代码(CDA)的全速率非正交空间块代码(SCTBC)的大型MIMO系统可以实现发射分集以及高光谱效率的益处。然而,最大可能性(ml)或在低复杂性下的这些大型STBC的近ML解码是挑战。在本文中,我们在实际价格实惠的低复杂性方面建立了这些大型STBC的近mL解码。我们表明,由我们提前报告的V-Blast的可能性上升搜索(LAS)检测器能够在从CDA中解码32×32 STBC的近mL未编码的BER性能,该CDA采用32个发射天线并发送32 { Sup} 2 =在一个STBC矩阵中的32个时隙中的1024个复数数据符号(即,每频道发送的32个数据符号)。在编码BER方面,具有16×16 STBC,速率-3 / 4涡轮码和4-QAM(即24 bps / Hz),LAS检测器从理论MIMO容量中靠近约4 dB。我们的结果进一步表明,随着LAS检测,信息无损(ILL)STBCS表现几乎与全多样性生病(FD-ILL)STBCS一样好。这种低复杂性检测器可以实现可以在无线标准中考虑的高光谱效率大型MIMO系统。

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