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Transmit-antenna selection for spatial multiplexing with ordered successive interference cancellation

机译:具有有序连续干扰消除的空间复用的发送天线选择

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This letter proposes a low-complexity algorithm for transmit-antenna selection in a multi-input multi-output spatial multiplexing system with per-antenna rate control and an ordered successive interference cancellation receiver. The active antenna subset and its transmission rate are determined at the receiver, and conveyed to the transmitter using limited feedback. We propose a serial antenna-selection procedure consisting of a successive process that tests whether transmit-antenna selection gain exists when the antenna with the lowest signal-to-interference-plus-noise ratio (SINR) is discarded at each selection stage. Furthermore, we show that "reverse-detection ordering", whereby the signal with the lowest SINR is decoded at each stage of successive decoding, widens the disparities among fractions of the whole capacity allocated to each individual antenna, and thus maximizes a gain of antenna selection. Numerical results show that the proposed reverse-detection-ordering-based serial antenna selection induces a negligible capacity loss, compared with the exhaustive selection strategy, even with considerably reduced complexity.
机译:这封信提出了一种低复杂度算法,用于在具有每个天线速率控制和有序连续干扰消除接收器的多输入多输出空间复用系统中选择发射天线。有源天线子集及其传输速率在接收机处确定,并使用有限的反馈传达给发射机。我们提出了一个串行天线选择程序,该程序由一个连续的过程组成,该过程测试当在每个选择阶段丢弃具有最低信噪比(SINR)的天线时是否存在发射天线选择增益。此外,我们证明了“反向检测排序”,即具有最低SINR的信号在连续解码的每个阶段被解码,加宽了分配给每个单独天线的全部容量的分数之间的差异,从而使天线的增益最大化选择。数值结果表明,与穷举选择策略相比,所提出的基于反向检测排序的串行天线选择引起的容量损失可以忽略不计,即使复杂度大大降低了。

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