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Analysis on the Diversity-Multiplexing Tradeoff for Ordered MIMO SIC Receivers

机译:有序MIMO SIC接收机分集复用折衷的分析。

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The diversity-multiplexing tradeoff for multipleinput multiple-output (MIMO) point-to-point channels and multiple access channels were first proposed and studied by Zheng and Tse recently. While the optimal tradeoff curves for MIMO channels have been explicitly explored, those corresponding to some suboptimal and practical MIMO schemes are still open. One such important problem is the diversity-multiplexing tradeoff for a V-BLAST type system employing ordered successive interference cancellation (SIC) receivers with zero forcing (ZF) or minimum mean square error (MMSE) processing at each stage. In this paper, we take a novel geometrical approach and rigorously verify that under general settings, the optimal ordering rule for a V-BLAST SIC receiver will not improve its performance regarding diversity-multiplexing tradeoff in pointto- point channels. The same geometrical tool is then applied to MIMO spatial-division multiple access channels, leading to some first results in this area. Particularly, we reveal that when the rates of data streams are fixed (i.e., zero spatial multiplexing gain), the diversity order is not improved by user ordering.
机译:Zheng和Tse最近首次提出并研究了多输入多输出(MIMO)点对点信道和多路访问信道的分集复用权衡。尽管已经明确探索了MIMO信道的最佳折衷曲线,但与某些次优和实用MIMO方案相对应的那些折衷曲线仍未解决。这样的重要问题之一是用于V-BLAST类型系统的分集复用折衷,该系统采用在每个阶段具有零强迫(ZF)或最小均方误差(MMSE)处理的有序连续干扰消除(SIC)接收机。在本文中,我们采用一种新颖的几何方法,并严格验证了在一般设置下,V-BLAST SIC接收机的最佳排序规则不会改善其在点对点信道中的分集复用权衡方面的性能。然后,将相同的几何工具应用于MIMO空分多址信道,从而在该领域产生一些初步成果。特别地,我们揭示了当数据流的速率是固定的(即,零空间复用增益)时,分集次序不能通过用户排序来改善。

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