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A Reduced Complexity Random Fourier Filter Based Nonlinear Multichannel Narrowband Active Noise Control System

机译:基于无随机的傅里叶滤波器的非线性多通道窄带有源噪声控制系统

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摘要

Linear-in-the-parameters nonlinear controllers are widely used for active noise cancellation (ANC) in the presence of nonlinearities in the system. However, the performance of such controllers deteriorates significantly in highly nonlinear systems and also in the presence of nonlinear harmonic distortion. To overcome these issues, a kernel filtered-x least mean square (KFxLMS) algorithm based narrowband ANC system has been recently reported in the literature. We observe that the large memory size and high computational complexity of the KFxLMS algorithm hinder its implementation in real-time ANC systems. To alleviate these issues, a single channel random Fourier filter based FxLMS (RFFxLMS) algorithm is proposed in this brief. The above formulation is then extended to the multichannel scenario, and an RFF based multichannel narrowband ANC system is developed to achieve noise reduction over a broader area. The computational load of the proposed multichannel approach is further reduced by using a partial updating method. The simulation study shows that the overall performance of the proposed schemes is significantly better than the existing nonlinear methods.
机译:参数线性非线性控制器广泛用于系统中非线性存在的主动噪声消除(ANC)。然而,这种控制器的性能在高度非线性系统中显着恶化,并且在非线性谐波失真的存在下也会劣化。为了克服这些问题,最近在文献中报告了基于内核过滤器-X最小均线(KFXLMS)算法的窄带ANC系统。我们观察到KFXLMS算法的大存储器大小和高计算复杂性阻碍了其在实时ANC系统中的实现。为了缓解这些问题,在此简介中提出了一种基于单通道随机傅里叶滤波器的FXLMS(RFFXLMS)算法。然后将上述配方扩展到多通道场景,并且开发了基于RFF的多通道窄带ANC系统以在更广泛的区域上实现降噪。通过使用部分更新方法进一步减少了所提出的多通道方法的计算负荷。仿真研究表明,所提出的方案的整体性能明显优于现有的非线性方法。

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