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Practical active control of cavity noise using loop shaping: Two case studies

机译:使用环路整形实际主动控制腔噪声:两个案例研究

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A simple loop shaping technique is applied to design an optimal, robust feedback controller to reduce the interior noise of an acoustic cavity. It is a data-based technique that uses the measured plant response to tune the parameters of a fixed-structure controller in a graphical way. The two cases studied are narrow band noise control in a small cavity and broadband noise control in a long duct. Each control system consists of a microphone, a loudspeaker, and a controller connecting the two transducers that are further collocated. The fixed-structure of each controller should be chosen ahead of loop shaping and is determined in this paper solely based on the Nyquist plot of each plant measured. It turns out that a single band (high) pass filter of second order is suitable for the narrowband (broadband) noise control case considered. It is finally demonstrated with experiments that the technique is practical and a second order filter can be effectively used for active control of cavity noise in a single narrow or broad frequency band. (C) 2016 Elsevier Ltd. All rights reserved.
机译:应用一种简单的环路整形技术来设计最佳的鲁棒反馈控制器,以减少声腔的内部噪声。这是一项基于数据的技术,使用测得的工厂响应以图形方式调整固定结构控制器的参数。所研究的两种情况是小腔体中的窄带噪声控制和长导管中的宽带噪声控制。每个控制系统都包括一个麦克风,一个扬声器和一个控制器,该控制器连接两个并置的换能器。每个控制器的固定结构应在环路整形之前选择,并且仅根据所测量的每个工厂的奈奎斯特图确定。事实证明,对于所考虑的窄带(宽带)噪声控制情况,二阶单带(高)通滤波器是合适的。最后通过实验证明了该技术的实用性,并且可以有效地使用二阶滤波器来主动控制单个窄或宽频带中的腔噪声。 (C)2016 Elsevier Ltd.保留所有权利。

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