一种用于减少车内声音的“开环”控制方法

F. Amato, G. Celentano, D. Freni
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引用次数: 0

摘要

在本文中,我们考虑了通过在车顶放置压电致动器和在乘客对应位置放置麦克风来减小汽车外壳内发动机产生的声音的问题。初步分析表明,执行器对传声器的频率响应具有非常大的频带和高的模态密度,具有许多共振峰。基于这些事实,反馈控制律的设计可能会引起溢出现象,这种溢出现象将表现为产生比原始噪声更令人不快的高频声音。因此,我们提出了一种基于开环控制原理的控制器设计;也就是说,控制动作被设计成这样一种方式,即控制信号的频谱被包含在干扰带中。由于我们处理的噪声不是经典类型(纯正弦或多音调),而是宽带干扰,基于模型反演的经典开环控制技术无法实现;为此,本文引入了广义频率响应的概念,使我们能够处理宽带信号。数值仿真结果表明了该控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An "open loop" control methodology for sound reduction inside a car
In this paper we consider the problem of reducing the sound generated by the engine inside a car enclosure by using piezoelectric actuators located on the car's roof and microphones placed in correspondence of the passengers. A preliminary analysis shows that the frequency responses from the actuators to the microphones are characterized by a very large band and exhibit a high modal density with many resonance peaks. Based on these facts, the design of a feedback control law could originate spillover phenomena, which will manifest through the generation of high frequency sounds even more unpleasent than the original noise. Therefore we propose the design of a controller based on an open loop control philosophy; that is the control action is designed in such a way that the spectrum of the control signals is contained into the disturbance band. Since the noise we deal with is not of a classical type (pure sinusoidal or multi-tonal) but is a wide band disturbance, classical open loop control techniques, based on model inversion, cannot be implemented; to this end the concept of Generalized Frequency Response, which allows us to deal with wide band signals, is introduced in the paper. Numerical simulations show the benefits of the proposed control technique.
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