基于实时声模态分析的管道风机主动降噪

Kenichiro Nagat, Yutaro Suzuki, Ytizo Inokuchi, H. Oinuma, Tatsuya Ishll, N. Yamasaki
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引用次数: 2

摘要

本研究的主要目的是将主动降噪技术应用于管道风机。在风管风机的声场中,由于定子和旋转叶片的相互作用,产生了旋转声模态。为了实现对管道内主要声模态的基本消除,需要精确的声模态分解和抗噪声再现。我们建立了一个实时声模态分解系统,在管道表面圆周上安装了一组麦克风。提出了一种频域形式的滤波-x LMS算法,将模态分解的结果作为误差信号,实现对特定声模态的消除。一组扬声器沿周向安装在管道上,以产生“抗噪声”信号。结果表明,该方法降噪效果好,收敛速度快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active noise cancellation of ducted fan using real-time acoustic modal analysis
The main objective of this study is to apply active noise cancellation technique to the duct fan. In the acoustic field of a duct fan, the rotating acoustic modes are generated due to the interaction of stators and rotating blades. To achieve the essential elimination of dominant acoustic modes inside the duct, the accurate acoustic mode decomposition and the reproduction of anti-noise are both required. We build a real-time acoustic mode decomposition system with an array of microphones circumferentially mounted on the duct surface. The filtered-x LMS algorithm in the frequency domain form is developed with applying the result of mode decomposition as an error signal in order to achieve the elimination of a specific acoustic mode. An array of loudspeakers is equipped circumferentially onto the duct to generate “anti-noise” signal. A large noise reduction and rapid convergence with this method have been shown by the results.
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