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A new feedforward hybrid active control system for attenuating multi-frequency noise with bursty interference

机译:一种新的馈通混合有源控制系统,用于突发干扰衰减多频噪声

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摘要

Noise from rotating machinery in an enclosed space exhibits both narrowband and broadband characteristics. Hybrid active noise control (HANC) algorithms are usually used in this case to cancel both kinds of noise. However, sometimes also bursty noise occurs. In a mechanical system, for example, it may occur in every cycle if the gear wheel faces are damaged. Bursty noise has high amplitudes and short duration, and this may deteriorate the narrowband attenuation performance of the HANC method. To address this problem, a feedforward HANC algorithm with a sinusoidal residual error structure (HANC-SRE) is proposed in this paper. By applying the sinusoidal residual error (SRE) subsystem, the proposed HANC-SRE algorithm can decrease the error interference between different narrowband adaptive filters for different frequencies. The structure of the traditional HANC is then redesigned to use the broadband filter as the primary noise absorber and the narrowband filters as secondary ones to achieve better performance for bursty noise. Moreover, we also introduce a variable step-size updating method to improve the tracking performance of the system. Theoretical analysis of convergence conditions and instantaneous residual output error is performed to evaluate the performance of the HANC-SRE algorithm. Experimental results demonstrate that HANC-SRE achieves better tracking performance while also being more robust than conventional HANC methods.
机译:封闭空间中旋转机械的噪声表现出窄带和宽带特性。在这种情况下通常使用混合有源噪声控制(HANC)算法以取消两种噪声。但是,有时也会发生爆发噪声。例如,在机械系统中,如果齿轮面损坏,则可能发生在每个循环中。爆发噪声具有高幅度和持续时间短,这可能会使HANC方法的窄带衰减性能恶化。为了解决这个问题,本文提出了一种具有正弦残留误差结构(HANC-SRE)的前馈HANC算法。通过应用正弦残留误差(SRE)子系统,所提出的HANC-SRE算法可以降低不同频率的不同窄带自适应滤波器之间的误差干扰。然后重新设计传统的HANC的结构以使用宽带滤波器作为主要噪声吸收器和窄带滤波器作为次级噪声吸收器,以实现更好的抗噪声性能。此外,我们还引入了可变的步长更新方法来提高系统的跟踪性能。对收敛条件和瞬时剩余输出误差进行理论分析,以评估HANC-SRE算法的性能。实验结果表明,Hanc-SRE达到了更好的跟踪性能,而不是比传统的HANC方法更强大。

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