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Deterministic CCA-Based Algorithms for Blind Equalization of FIR-MIMO Channels

机译:基于确定性CCA的FIR-MIMO信道盲均衡算法

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In this paper, a new deterministic technique for blind equalization of multiple-input multiple-output (MIMO) channels is presented. The proposed method relies on the channel order diversity of the finite impulse response-MIMO channel, and it does not make any assumption about the spectra or the finite alphabet property of the sources. Assuming that the lengths of the single-input multiple-output channels are known or estimated a priori, it is able to extract the sources up to a scale and rotation matrix ambiguity, which only affects to those sources associated to single-input multiple-output (SIMO) channels with equal lengths. Unlike previously proposed techniques, the method described in this paper obtains the equalizers and the best linear combination of their outputs in a single step and, thus, optimally. The reformulation of the proposed method as a set of nested canonical correlation analysis problems is exploited to obtain efficient batch and adaptive equalization algorithms. Finally, the performance of the proposed algorithms is evaluated by means of some simulation examples.
机译:本文提出了一种新的确定性技术,用于对多输入多输出(MIMO)信道进行盲均衡。所提出的方法依赖于有限冲激响应-MIMO信道的信道阶数分集,并且没有对源的频谱或有限字母特性做出任何假设。假设单输入多输出通道的长度是已知的或先验估计的,则能够提取出比例和旋转矩阵模糊度最高的源,这仅影响与单输入多输出相关的那些源(SIMO)通道的长度相等。与以前提出的技术不同,本文描述的方法可在单个步骤中并因此以最佳方式获得均衡器及其输出的最佳线性组合。利用提出的方法作为一组嵌套典范相关分析问题的重构,以获取有效的批处理和自适应均衡算法。最后,通过一些仿真实例对所提出算法的性能进行了评估。

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