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Design of a near-optimal adaptive filter in digital signal processor for active noise control

机译:用于有源噪声控制的数字信号处理器中的近最佳自适应滤波器的设计

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摘要

Adaptive filter has been applied in adaptive feedback and feedforward control systems, where the filter dimension is often determined by trial-and-error. The controller design based on a near-optimal adaptive filter in digital signal processor (DSP) is developed in this paper for real-time applications. The design integrates the adaptive filter and the experimental design such that their advantages in stability and robustness can be combined. The near-optimal set of controller parameters, including the sampling rate, the dimension of system identification model, the dimension (order) of adaptive controller in the form of an FIR filter, and the convergence rate of adaptation is shown to achieve the best possible system performance. In addition, the sensitivity of each design parameter can be determined by analysis of means and analysis of variance. Effectiveness of the adaptive controller on a DSP is validated by an active noise control experiment.
机译:自适应滤波器已应用于自适应反馈和前馈控制系统中,其中滤波器的尺寸通常由反复试验确定。本文针对实时应用开发了一种基于数字信号处理器(DSP)中的最佳自适应滤波器的控制器设计。该设计集成了自适应滤波器和实验设计,因此可以将它们在稳定性和鲁棒性方面的优势结合起来。一组接近最佳的控制器参数,包括采样率,系统识别模型的尺寸,自适应控制器的尺寸(阶数)(采用FIR滤波器的形式)以及自适应收敛速度,均显示出最佳效果系统性能。另外,可以通过均值分析和方差分析来确定每个设计参数的敏感性。通过主动噪声控制实验验证了DSP上自适应控制器的有效性。

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