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Combined feedback design of active noise control and face velocity control based on a novel secondary-path model of speaker-duct systems

机译:基于扬声器管道系统新型二次路径模型的主动噪声控制与人脸速度控制相结合的反馈设计

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摘要

Active noise control (ANC)-based systems provide good low-frequency noise attenuation by destructive interference between the secondary signal from an acoustic actuator (speaker) and the primary noise of the acoustic field (duct). A novel secondary-path model that described by two cascaded transfer functions and two disturbances for speaker-duct systems is first developed in this study. One disturbance is imposed on face velocity of actuator speaker that is usually ignored in ANC systems while the other is on sound pressure at a given location in the duct. The transfer functions are identified with measurements from a developed velocity sensor and a microphone, respectively. A combined design of ANC and face velocity control (FVC) based on the identified secondary-path model is further proposed to set up an adaptive feedback ANC/FVC controller with a modified filtered-X recursive least square (FXRLS) algorithm to update controller coefficients to reduce noise levels near microphone location. Results of experiments show that the adaptive feedback ANC/FVC controller has a noise reduction performance of similar to 27-46 dB for noise at a frequency between 100-200 Hz, as compared with similar to 10-35 dB for that of the conventional feedback ANC design. Furthermore, the adaptive feedback controller reveals a good capability to reduce the noise level for time-varying noise of a frequency sweeping from 100 to 200 Hz. Our data demonstrate a substantial improvement in the low-frequency noise attenuation using the developed controller that includes commonly overlooked factors and support the feasibility of our proposed approach in practices.
机译:基于有源噪声控制(ANC)的系统通过来自声学执行器(扬声器)的次级信号与声场(管道)的初级噪声之间的相消干扰,提供了良好的低频噪声衰减。在这项研究中,首先开发了一种新颖的次级路径模型,该模型通过两个级联传递函数和两个扰动来描述扬声器系统。一种干扰作用在执行器扬声器的面速度上,通常在ANC系统中被忽略,另一种干扰作用在管道中给定位置的声压上。通过分别来自发达的速度传感器和麦克风的测量值来识别传递函数。进一步提出了基于识别出的次级路径模型的ANC和面部速度控制(FVC)的组合设计,以建立具有改进的滤波X递归最小二乘(FXRLS)算法的自适应反馈ANC / FVC控制器,以更新控制器系数降低麦克风位置附近的噪音水平。实验结果表明,自适应反馈ANC / FVC控制器在100-200 Hz之间的频率下具有约27-46 dB的降噪性能,而常规反馈的降噪性能则为10-35 dB。 ANC设计。此外,自适应反馈控制器具有良好的能力,可以降低从100到200 Hz的频率变化的时变噪声的噪声水平。我们的数据表明,使用已开发的控制器(包括通常被忽略的因素)可以显着改善低频噪声衰减,并支持我们提出的方法在实践中的可行性。

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