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Reduction of the Radiating Sound of a Submerged Finite Cylindrical Shell Structure by Active Vibration Control

机译:通过主动振动控制降低水下圆柱壳结构的辐射声

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摘要

In this work, active vibration control of an underwater cylindrical shell structure was investigated, to suppress structural vibration and structure-borne noise in water. Finite element modeling of the submerged cylindrical shell structure was developed, and experimentally evaluated. Modal reduction was conducted to obtain the reduced system equation for the active feedback control algorithm. Three Macro Fiber Composites (MFCs) were used as actuators and sensors. One MFC was used as an exciter. The optimum control algorithm was designed based on the reduced system equations. The active control performance was then evaluated using the lab scale underwater cylindrical shell structure. Structural vibration and structure-borne noise of the underwater cylindrical shell structure were reduced significantly by activating the optimal controller associated with the MFC actuators. The results provide that active vibration control of the underwater structure is a useful means to reduce structure-borne noise in water.
机译:在这项工作中,研究了水下圆柱壳结构的主动振动控制,以抑制水中的结构振动和结构传播的噪声。开发了水下圆柱壳结构的有限元模型,并进行了实验评估。进行模态约简以获得主动反馈控制算法的约简系统方程。三种宏观纤维复合材料(MFCs)被用作致动器和传感器。一台MFC被用作激励器。基于简化系统方程,设计了最优控制算法。然后使用实验室规模的水下圆柱壳结构评估主动控制性能。通过激活与MFC执行器相关的最佳控制器,可以显着降低水下圆柱壳结构的结构振动和结构噪声。结果提供了对水下结构的主动振动控制是减少水中的结构传播噪声的有用手段。

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