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首页> 外文期刊>EURASIP journal on advances in signal processing >Fast Adaptive Blind MMSE Equalizer for Multichannel FIR Systems
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Fast Adaptive Blind MMSE Equalizer for Multichannel FIR Systems

机译:用于多通道FIR系统的快速自适应盲MMSE均衡器

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We propose a new blind minimum mean square error (MMSE) equalization algorithm of noisy multichannel finite impulse response (FIR) systems, that relies only on second-order statistics. The proposed algorithm offers two important advantages: a low computational complexity and a relative robustness against channel order overestimation errors. Exploiting the fact that the columns of the equalizer matrix filter belong both to the signal subspace and to the kernel of truncated data covariance matrix, the proposed algorithm achieves blindly a direct estimation of the zero-delay MMSE equalizer parameters. We develop a two-step procedure to further improve the performance gain and control the equalization delay. An efficient fast adaptive implementation of our equalizer, based on the projection approximation and the shift invariance property of temporal data covariance matrix, is proposed for reducing the computational complexity from to , where is the number of emitted signals, the data vector length, and the dimension of the signal subspace. We then derive a statistical performance analysis to compare the equalization performance with that of the optimal MMSE equalizer. Finally, simulation results are provided to illustrate the effectiveness of the proposed blind equalization algorithm.
机译:我们提出了一种新的基于噪声的多通道有限冲激响应(FIR)系统的最小均方误差(MMSE)均衡算法,该算法仅依赖于二阶统计量。所提出的算法具有两个重要优点:低计算复杂度和相对强健的信道阶高估误差。利用均衡器矩阵滤波器的列既属于信号子空间又属于截断数据协方差矩阵的内核这一事实,该算法盲目地实现了零延迟MMSE均衡器参数的直接估计。我们开发了一个两步过程来进一步提高性能增益并控制均衡延迟。提出了一种基于投影近似和时间数据协方差矩阵的位移不变性的高效均衡器高效自适应实现方案,用于将计算复杂度从降低到,其中发射信号的数量,数据矢量长度和信号子空间的尺寸。然后,我们进行统计性能分析,以将均衡性能与最佳MMSE均衡器进行比较。最后,提供仿真结果以说明所提出的盲均衡算法的有效性。

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