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首页> 外文期刊>IEEE signal processing letters >A square-root adaptive V-BLAST algorithm for fast time-varying MIMO channels
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A square-root adaptive V-BLAST algorithm for fast time-varying MIMO channels

机译:用于快速时变MIMO信道的平方根自适应V-BLAST算法

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摘要

Among the methods that have been proposed for a multiple-input multiple-output (MIMO) receiver, the V-BLAST algorithm provides a good compromise between transmission rate, achievable diversity, and decoding complexity. In this letter, we derive a new adaptive V-BLAST-type equalization scheme for fast time-varying, flat-fading MIMO channels. The proposed equalizer stems from the Cholesky factorization of the MIMO system's output data autocorrelation matrix, and the equalizer filters are updated in time using numerically robust unitary Givens rotations. The new square-root algorithm exhibits identical performance to a recently proposed V-BLAST adaptive algorithm, offering at the same time noticeable reduction in computational complexity. Moreover, as expected due to its square-root form and verified by simulations, the algorithm exhibits particularly favorable numerical behavior.
机译:在针对多输入多输出(MIMO)接收器提出的方法中,V-BLAST算法在传输速率,可实现的分集和解码复杂度之间提供了很好的折衷方案。在这封信中,我们推导了一种适用于快速时变,平坦衰落的MIMO信道的新型自适应V-BLAST型均衡方案。提出的均衡器源于MIMO系统输出数据自相关矩阵的Cholesky分解,并且使用数值鲁棒的Given元Givens旋转及时更新均衡器滤波器。新的平方根算法表现出与最近提出的V-BLAST自适应算法相同的性能,同时显着降低了计算复杂度。而且,正如预期的那样,由于其平方根形式并通过仿真验证,该算法表现出特别良好的数值性能。

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