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The design of structural acoustic sensors for active control of sound radiation into enclosures

机译:用于主动控制进入外壳的声音辐射的结构声传感器的设计

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This paper introduces a design method for polyvinylidene fluoride (PVDF) structural acoustic sensors for the active control of sound radiation into enclosures. It combines genetic algorithms and the quadratic optimal approach to search for a sensor configuration capable of detecting vibration components with strong sound-radiation ability. In this research, one PVDF sensor is not limited to one single piece of continuous PVDF film. It can consist of a cluster of small PVDF pieces, which could be discrete. Therefore, the parameters to be optimized are the number and the locations of PVDF pieces involved in a sensor. The design method is applied to a cylindrical shell with a floor partition. The general design guidelines are discussed. To show the effectiveness of the method, the control performance of an optimal sensor arrangement is compared with that of non-optimal ones. Physical insights are obtained using structural modal response analysis, modal spectrum analysis of the PVDF sensor output, and structural acoustical coupling analysis. The performance of a PVDF sensor configuration designed at one acoustic resonant frequency is also investigated for other disturbance frequencies below 500 Hz, showing that a significant reduction of acoustic potential energy can be achieved over a wide frequency range. It is demonstrated that, with PVDF sensors optimally designed using the proposed method, the active control of sound radiation into enclosures can be achieved without using acoustic transducers.
机译:本文介绍了一种用于聚偏氟乙烯(PVDF)结构声传感器的设计方法,用于主动控制进入外壳的声音辐射。它结合了遗传算法和二次优化方法,以寻找能够检测具有强声辐射能力的振动分量的传感器配置。在这项研究中,一个PVDF传感器不仅限于一块连续的PVDF膜。它可以由一簇小的PVDF碎片组成,可以是离散的。因此,要优化的参数是传感器中涉及的PVDF件的数量和位置。该设计方法适用于带有地板隔板的圆柱形壳体。讨论了一般设计准则。为了显示该方法的有效性,将最佳传感器布置的控制性能与非最佳传感器布置的控制性能进行了比较。使用结构模态响应分析,PVDF传感器输出的模态频谱分析以及结构声耦合分析可以获得物理见解。还针对低于500 Hz的其他干扰频率研究了在一个声共振频率下设计的PVDF传感器配置的性能,这表明可以在很宽的频率范围内显着降低声势能。结果表明,采用所提出的方法对PVDF传感器进行了优化设计,无需使用声换能器就可以实现对声辐射进入外壳的主动控制。

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