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Loudspeaker nonlinearity compensation with inverse tangent hyperbolic function-based predistorter for active noise control

机译:基于反正切双曲函数的预失真器的扬声器非线性补偿,用于主动噪声控制

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摘要

In active noise control (ANC), the performance of the filtered-x least mean squares (FXLMS) algorithm is degraded by the saturation of the loudspeaker in the secondary path. Predistortion is a linearization technique commonly used in signal processing applications to compensate for saturation nonlinearity. The design of the predistorter (PD) requires the use of direct measurement from the output of the nonlinear element. However, in ANC applications, direct measurement from the loudspeaker output is not available. Therefore, a conventional PD design approach cannot be directly applied. In this paper, a new PD-based compensation technique based on the inverse model of the loudspeaker nonlinearity is proposed. The PD is represented by an approximated memory-less inverse tangent hyperbolic function (ITHF). The approximated ITHF is scaled by a pre-identified parameter, which represents the loudspeaker nonlinearity strength. This parameter can be obtained by modelling the secondary path using a proposed block-oriented Hammerstein structure in which the nonlinear part is represented by a memory-less tangent hyperbolic function (THF). Simulation results show that using the proposed PD along with the FXLMS algorithm increase the noise reduction performance significantly.
机译:在主动噪声控制(ANC)中,由于次级路径中扬声器的饱和度,滤波x最小均方(FXLMS)算法的性能会降低。预失真是一种线性化技术,通常用于信号处理应用中以补偿饱和非线性。预失真器(PD)的设计要求使用非线性元件输出的直接测量值。但是,在ANC应用中,无法从扬声器输出进行直接测量。因此,传统的PD设计方法无法直接应用。本文提出了一种基于扬声器非线性的逆模型的基于局部放电的补偿技术。 PD由近似的无记忆逆正切双曲函数(ITHF)表示。近似的ITHF由预先确定的参数缩放,该参数代表扬声器的非线性强度。该参数可通过使用建议的面向块的Hammerstein结构对次级路径进行建模来获得,其中非线性部分由无记忆切线双曲函数(THF)表示。仿真结果表明,将所提出的PD与FXLMS算法结合使用,可显着提高降噪性能。

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