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The theoretical fundamentals of an adaptive active control using periodic Helmholtz resonators for duct-borne transmission noise in ventilation systems

机译:使用周期性亥姆霍兹共振器的自适应主动控制的理论基础,用于通风系统中的风道传播噪声

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摘要

This article theoretically proposes an innovative semi-active noise control method for the control of duct-borne transmission noise. This method is designed to be a more efficient, robust and broad-band adaptive attenuating effect than the traditional pass noise control methods used in duct-borne sound control. Based on the fundamental theory on the pass-stop band structure of sound waves propagating in a one-dimensional periodic duct system, the proposed control method combines band-gap attenuation using the side-branch resonators array with the auto-adaptive system of noise control. Using this method in the simulation and analysis, the transmission noise in an air duct can be effectively controlled in relatively wide bands by periodic alternate resonators of small variable parameters. The developed semi-active control method is numerically designed to efficiently reduce the duct-borne transmission noise at frequencies around a variable major tone in various working conditions. Practical applications: The proposed semi-active noise control method with band-gap attenuation of a periodic adaptive resonator array is generally an efficient, robust and broad-band noise control system. It has the potential to be used to control duct-borne transmission noise in order to satisfy stringent indoor acoustical requirements such as those of the indoor air-conditioned environments of a hospital, a scientific laboratory, a council hall and a living room.
机译:本文从理论上提出了一种创新的半主动噪声控制方法,用于控制管道传播的噪声。这种方法被设计为比风管传播的声音控制中使用的传统通过噪声控制方法更有效,更健壮且具有宽带自适应衰减效果。基于一维周期性管道系统中传播的声波的通停带结构的基本理论,该控制方法将侧分支谐振器阵列的带隙衰减与噪声控制自适应系统相结合。 。在仿真和分析中使用这种方法,可以通过较小可变参数的周期性交替谐振器在相对较宽的频带中有效控制风管中的传输噪声。所开发的半主动控制方法经过数值设计,可有效降低各种工作条件下可变主音周围频率处的管道传播噪声。实际应用:所提出的具有周期性自适应谐振器阵列的带隙衰减的半主动噪声控制方法通常是一种高效,鲁棒的宽带噪声控制系统。它有潜力用于控制风管传播的噪声,以满足严格的室内声学要求,例如医院,科学实验室,市政厅和客厅的室内空调环境。

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    Y Yun; CM Mak;

  • 作者单位

    Department of Building Services Engineering, The Hong Kong Polytechnic University, Hung Horn, Kowloon, Hong Kong, China;

    Department of Building Services Engineering, The Hong Kong Polytechnic University, Hung Horn, Kowloon, Hong Kong, China;

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  • 入库时间 2022-08-18 00:25:41

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