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Influence of Noise Frequency on Secondary Sound Source Layout for a Duct Active Noise Control System

机译:噪声频率对管道有源噪声控制系统次级声源布局的影响

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The ducts generate noise when the duct equipment works, which seriously affects people's life and work. Active noise control effectively reduces low frequency noise in the ducts. According to the acoustic theory, the optimal secondary sound source location of the duct active control system under different noise frequencies is derived and a duct active noise control system based on virtual error sensing strategy is designed. The single-frequency noise of 300 Hz, 400 Hz…1000 Hz was tested. The maximum noise reduction in the 500–700 Hz range was greater than 10 dB. The theory and experiment results showed that the secondary sound source was arranged at an integer multiple of half wavelength to achieve the greatest noise reduction. The layout rule was applied to a duct fan with a rotational speed of 2600 r/min, and a noise reduction of 11.1 dB was obtained.
机译:当管道设备的工作原理时,管道产生噪音,这严重影响人们的生命和工作。主动噪声控制有效地降低了管道中的低频噪声。根据声学理论,推导出不同噪声频率下的管道有源控制系统的最佳次级声源位置,并设计了基于虚拟误差感测策略的管道有源噪声控制系统。测试了300 Hz,400 Hz ... 1000 Hz的单频噪声。 500-700Hz范围内的最大降噪大于10 dB。理论和实验结果表明,次级声源布置在半波长的整数倍数,以实现最大的降噪。将布局规则施加到具有2600 r / min的转速的管道风扇,获得11.1dB的降噪。

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