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首页> 外文期刊>International Journal of Mechanical Sciences >A theoretical analysis on the active structural acoustical control of a vibration isolation system with a coupled plate-shell foundation
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A theoretical analysis on the active structural acoustical control of a vibration isolation system with a coupled plate-shell foundation

机译:具有耦合板壳基壳体振动隔离系统的主动结构声学控制的理论分析

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摘要

An analytical description of active structural acoustical control of vibration isolation with a plate-shell coupled foundation is presented. The vibration isolation system is composed of a two-stage isolation and a flexible supporting plate coupled with an elastic cylindrical shell, which are connected via passive-active mounts. The model of the flexible foundation is derived based on the Spectro-Geometric Method (SGM) in which the displacements of the plate and shell are expressed as a modified Fourier series expansion. The response of the whole structure is available obtained by the Flexible Foundation Rigid Equipment (FFRE) modeling method. Different feed-forward control strategies are applied and their corresponding optimal control forces are calculated, including: (a) Minimizing the acoustic power radiated from the coupled structure, (b) Minimizing the sum of the square velocity of the isolators on the supporting plate, and (c) Minimizing the input power. Numerical results are presented and discussed. The performances of all feed-forward control strategies are evaluated and compared in terms of the acoustic radiation power, transmission power flow, control force amplitudes and sound pressure directivity. The effects of location of the actuators are also discussed.
机译:提出了具有板壳耦合基础的振动隔离有源结构声学控制的分析描述。振动隔离系统由两级隔离和柔性支撑板组成,柔性支撑板与弹性圆柱形壳体连接,弹性圆柱形壳体通过无源主动安装件连接。基于光谱 - 几何方法(SGM)导出柔性基础的模型,其中板和外壳的位移表示为改进的傅里叶串联扩展。通过柔性基础刚性设备(FFRE)建模方法获得整体结构的响应。应用了不同的前馈控制策略,并计算它们的相应的最佳控制力,包括:(a)最小化从耦合结构辐射的声功率,(b)最小化支撑板上的隔离器的方形速度之和, (c)最小化输入功率。提出和讨论了数值结果。根据声辐射功率,传输功率流,控制力幅度和声压方向性,评估所有前锋控制策略的性能。还讨论了致动器位置的影响。

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