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Active Sound Control on Boundary Layers

机译:边界层上的主动声音控制

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摘要

Active control of sound reflection on a boundary of acoustic medium is studied based on the electro-acoustic multilayer model and the feedback control. The acoustic medium boundary is made of multiple layers of elastic materials and two electro-acoustic transducer layers that can transform acoustic signal to electric signal and vice versa. When acoustic waves are incident on the boundary, the external control circuit receives the electric signal from the transducer that measures acoustic pressure level on the boundary surface, properly filters the signal band and actuates the other transducer so that actuated acoustic waves can suppress the reflection waves. Advantage of this active approach is in the small thickness of the boundary layer configuration over passive absorption layers and in wider frequency band control over other control algorithms. This paper discusses the controllability of the active boundary layers from the view of time delay caused from the thickness of transducers layers, and its affect on the reflection control performance and stability.
机译:基于电声多层模型和反馈控制,研究了声介质边界上声反射的主动控制。声介质边界由多层弹性材料和两个电声换能器层组成,可以将声信号转换为电信号,反之亦然。当声波入射到边界上时,外部控制电路从换能器接收电信号,该换能器测量边界表面上的声压级,对信号带进行适当的滤波并激活另一个换能器,以便被激活的声波可以抑制反射波。这种主动方法的优势在于,边界层配置的厚度要比无源吸收层小,而频带控制要比其他控制算法宽。本文从换能器层的厚度引起的时延的角度讨论了有源边界层的可控性,以及对反射控制性能和稳定性的影响。

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