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An adaptive approach to subband domain convolutive blind source separation

机译:子带域卷积盲源分离的自适应方法

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An adaptive approach of Blind Source Separation (BSS) based on subband state space modeling has been proposed in this paper. This algorithm is explicitly designed for convolutive mixtures of communication signals with automatic wavelet shrinkage denoising. The proposed approach is more reliable due to the combination of subband blind source algorithm and wavelet de-noising. It ultimately resolves the drawbacks of BSR algorithm in noisy environment of communication signals. Moreover, the speed of algorithm has been improved by employing shorter de-mixing filter in each sub band domain. The proposed methodology has improved efficiency in term of speed and accuracy as compared to the previous approaches. Better separation ability has been achieved by using an adaptive step size based on non-linear function in each subband. Particular settings have been applied to “de-mixing filter length” in various subbands to enhance the separation capability. Wavelet shrinkage de-noising has been applied to the recovered output of each subband to improve the algorithmic performance in noisy environment. “SURE Shrink” model is used for nonlinear soft thresholding of approximate coefficients of discrete wavelet transforms. It results improved performance in noisy environment. 16QAM communication signals with same carrier frequency are considered for Computer simulation in MATLAB for the verification of the improved results of the proposed scheme.
机译:提出了一种基于子带状态空间建模的盲源分离(BSS)自适应方法。该算法是专门为具有自动小波收缩降噪功能的通信信号的卷积混合而专门设计的。由于子带盲源算法和小波消噪相结合,该方法更加可靠。它最终解决了在通信信号嘈杂的环境中BSR算法的弊端。此外,通过在每个子带域中使用较短的去混合滤波器,提高了算法的速度。与先前的方法相比,所提出的方法在速度和准确性方面已提高了效率。通过在每个子带中使用基于非线性函数的自适应步长,可以实现更好的分离能力。特殊设置已应用于各个子带中的“混合滤波器长度”,以增强分离能力。小波收缩去噪已应用于每个子带的恢复输出,以改善在嘈杂环境中的算法性能。 “ SURE Shrink”模型用于离散小波变换的近似系数的非线性软阈值处理。这样可以在嘈杂的环境中提高性能。在MATLAB中进行计算机仿真时,考虑使用具有相同载波频率的16QAM通信信号,以验证所提出方案的改进结果。

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