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Frequency-Domain Adaptive Kalman Filter With Fast Recovery of Abrupt Echo-Path Changes

机译:快速恢复回声路径变化的频域自适应卡尔曼滤波器

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The frequency-domain Kalman filter (FDKF) was successfully applied in echo-cancelation systems due to its fast initial convergence and robustness to double-talk. However, the reconvergence ability of the FDKF was not comprehensively resolved and analyzed in the literature. This letter presents the steady-state solutions of the predicted system distance and corresponding step size of the FDKF, which is found to be related to the signal-to-noise ratio and the transition parameter. On this basis, it is pointed out that a frequently observed slow reconvergence of the FDKF, when the sudden echo-path change occurs, can be mainly attributed to the over-estimated noise power spectral density. Finally, we propose a shadow filter approach to resolve the algorithm's lack of reconvergence. Computer simulations of acoustic echo cancelation confirm the improved performance of the proposed method.
机译:频域卡尔曼滤波器(FDKF)由于其快速的初始收敛性和对双向通话的鲁棒性而成功应用于回声消除系统中。但是,FDKF的收敛能力在文献中并未得到全面解决和分析。这封信介绍了预测的系统距离和FDKF的相应步长的稳态解,发现它与信噪比和过渡参数有关。在此基础上指出,当突然出现回声路径变化时,经常观察到的FDKF慢速重新收敛可能主要归因于高估了的噪声功率谱密度。最后,我们提出了一种阴影滤波器方法来解决算法缺乏重新收敛性的问题。回声消除的计算机仿真证实了所提出方法的改进性能。

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