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Feedback control strategies for active control of noise inside a 3-D vibro-acoustic cavity

机译:主动控制3-D振动声腔内部噪声的反馈控制策略

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This paper presents and compares three feedback control strategies for active control of noise inside a 3-D vibroacoustic cavity. These are a) control strategy based on direct output feedback (DOFB) b) control strategy based on linear quadratic regulator (LQR) to reduce structural vibrations and c) LQR control strategy with a weighting scheme based on structural-acoustic coupling coefficients. The first two strategies are indirect control strategies in which noise reduction is achieved through active vibration control (AVC), termed as AVC-DOFB and AVC-LQR respectively. The third direct strategy is based on active structural-acoustic control (ASAC). This strategy is an LQR based optimal control strategy in which the coupling between the various structural and the acoustic modes is used to design the controller. The strategy is termed as ASACLQR. A numerical model of a 3-D rectangular box cavity with a flexible plate (glued with piezoelectric patches) and with other five surfaces treated rigid is developed using finite element (FE) method. A single pair of collocated piezoelectric patches is used for sensing the vibrations and applying control forces on the structure. A comparison of frequency response function (FRF) of structural nodal acceleration, acoustic nodal pressure, and piezoelectric actuation voltage is carried out. It is found that the AVCDOFB control strategy gives equal importance to all the modes. The AVC-LQR control strategy tries to consume the control effort to damp all the structural modes. It is seen that the ASAC-LQR control strategy utilizes the control effort more intelligently by adding higher damping to those structural modes that matter more for reducing the interior noise.
机译:本文介绍并比较了三种反馈控制策略,用于主动控制3-D振动声腔内的噪声。这些是a)基于直接输出反馈(DOFB)的控制策略b)基于线性二次调节器(LQR)的控制策略,可减少结构振动,以及c)具有基于结构-声学耦合系数的加权方案的LQR控制策略。前两种策略是间接控制策略,其中通过主动振动控制(AVC)来实现降噪,分别称为AVC-DOFB和AVC-LQR。第三种直接策略是基于主动结构声控制(ASAC)。该策略是基于LQR的最佳控制策略,其中,各种结构模式和声学模式之间的耦合用于设计控制器。该策略称为ASACLQR。使用有限元(FE)方法建立了带有柔性板(涂有压电片)和其他五个经过处理的刚性表面的3-D矩形箱形腔的数值模型。一对并置的压电贴片用于检测振动并在结构上施加控制力。对结构节点加速度,声学节点压力和压电致动电压的频率响应函数(FRF)进行了比较。发现AVCDOFB控制策略对所有模式都具有同等的重要性。 AVC-LQR控制策略试图消耗控制力来衰减所有结构模式。可以看出,ASAC-LQR控制策略通过为那些对降低内部噪声更为重要的结构模式增加更高的阻尼,从而更智能地利用控制效果。

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