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A Module Based Active Noise Control System for Ventilation Systems, Part I : Influence of Measurement Noise on the Performance and Convergence of the Filtered-x LMS Algorithm

机译:基于模块的通风系统主动噪声控制系统,第一部分:测量噪声对Filtered-x LMS算法的性能和收敛性的影响

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摘要

Low noise level is an essential feature when installing ventilation systems today. To achieve attenuation over a broad frequency range, the passive silencers traditionally used to attenuate ventilation noise can be combined with an active noise control (ANC) system. To insure reliable operation and desirable levels of attenuation when applying ANC to duct noise, it is highly important to be able to suppress the contamination of the microphone signals due to the turbulent pressure fluctuations arising as the microphones are exposed to the airflow in the duct. This paper is the first in a series of two, that treats the problem of turbulence induced noise originating from the airflow inside the ducts. Part I is concerned with theoretical and experimental investigations of the influence of the turbulence induced noise on the adaptive algorithm in the ANC system. Part II is concerned with design and investigations of microphone installations for turbulence suppression and results concerning the performance of an ANC system with the different microphone installations are presented. Some of the results were obtained at an acoustic laboratory according to an ISO-standard. The attenuation achieved with ANC was approximately 15-25 dB between 50-315 Hz even for airflow speeds up to 20 m/s.
机译:如今,安装通风系统时,低噪声水平是一项重要功能。为了在较宽的频率范围内实现衰减,传统上用于衰减通风噪声的无源消音器可以与有源噪声控制(ANC)系统结合使用。为了在将ANC应用于管道噪声时确保可靠的操作和理想的衰减水平,非常重要的是能够抑制由于麦克风暴露于管道中的气流而引起的湍流压力波动而污染麦克风信号。本文是这两个系列文章中的第一篇,它处理了由导管内部气流引起的湍流引起的噪声问题。第一部分涉及湍流引起的噪声对ANC系统中自适应算法影响的理论和实验研究。第二部分是关于用于抑制湍流的麦克风装置的设计和研究,并给出了有关具有不同麦克风装置的ANC系统性能的结果。一些结果是在声学实验室根据ISO标准获得的。即使气流速度高达20 m / s,使用ANC达到的衰减在50-315 Hz之间也约为15-25 dB。

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