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A class of frequency-domain adaptive approaches to blind multichannel identification

机译:一类用于盲多通道识别的频域自适应方法

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摘要

We extend our previous studies on adaptive blind channel identification from the time domain into the frequency domain. A class of frequency-domain adaptive approaches, including the multichannel frequency-domain LMS (MCFLMS) and constrained/unconstrained normalized multichannel frequency-domain LMS (NMCFLMS) algorithms, are proposed. By utilizing the fast Fourier transform (FFT) and overlap-save techniques, the convolution and correlation operations that are computationally intensive when performed by the time-domain multichannel LMS (MCLMS) or multichannel Newton (MCN) methods are efficiently implemented in the frequency domain, and the MCFLMS is rigorously derived. In order to achieve independent and uniform convergence for each filter coefficient and, therefore, accelerate the overall convergence, the coefficient updates are properly normalized at each iteration, and the NMCFLMS algorithms are developed. Simulations show that the frequency-domain adaptive approaches perform as well as or better than their time-domain counterparts and the cross-relation (CR) batch method in most practical cases. It is remarkable that for a three-channel acoustic system with long impulse responses (256 taps in each channel) excited by a male speech signal, only the proposed NMCFLMS algorithm succeeds in determining a reasonably accurate channel estimate, which is good enough for applications such as time delay estimation.
机译:我们将对自适应盲信道识别的先前研究从时域扩展到频域。提出了一种频域自适应方法,包括多通道频域LMS(MCFLMS)算法和约束/无约束归一化多通道频域LMS(NMCFLMS)算法。通过利用快速傅立叶变换(FFT)和重叠保存技术,当在时域多通道LMS(MCLMS)或多通道牛顿(MCN)方法执行时,计算量大的卷积和相关运算可在频域中有效实现,并且严格衍生了MCFLMS。为了实现每个滤波器系数的独立且一致的收敛,并因此加快总体收敛,系数更新在每次迭代时都经过适当归一化,并开发了NMCFLMS算法。仿真表明,在大多数实际情况下,频域自适应方法的性能均优于或优于其时域对应方法和交叉关系(CR)批处理方法。值得注意的是,对于由男性语音信号激发的具有长脉冲响应(每个通道有256个抽头)的三通道声学系统,只有提出的NMCFLMS算法才能成功确定合理准确的通道估计,这对于诸如此类的应用足够好作为时间延迟估计。

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