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Smart Double Panel with Decentralized Active Dampers for Sound Transmission Control

机译:具有分散式主动阻尼器的智能双面板,用于声音传输控制

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This paper presents a theoretical study of decentralized velocity feedback control systems for the reduction of sound transmission through double panels. The system studied consists of two plates which are coupled acoustically by the air in the cavity between them and structurally by four elastic mounts. The geometrical and material properties of the double panel have been chosen so as to approximate a section of an aircraft fuselage skin. The outer panel of the skin (the source panel) is excited by oblique plane waves and the consequent sound power radiated from the inner panel (the radiating panel) is calculated. First, a parametric study of passive sound transmission of double panels with different geometrical and material properties is carried out Second, active vibration control is implemented using 16 decentralized direct velocity feedback loops. Performance of such a control system is assessed for four control cases. The first two cases deal with skyhook force actuators with collocated velocity sensors, which implement active damping either on the source panel or on the radiating panel. In the third case, skyhook actuators and collocated velocity sensors are located on both panels. Finally, an approach using actuators that react between the two panels with collocated relative velocity sensors is considered.
机译:本文提出了一种分散速度反馈控制系统的理论研究,该系统可减少通过双面板的声音传输。所研究的系统由两块板组成,这两块板通过它们之间的空腔中的空气进行声学耦合,并在结构上通过四个弹性支座耦合。选择了双面板的几何和材料特性,以便近似飞机机身蒙皮的一部分。皮肤的外板(源板)被平面斜波激发,从而计算出从内板(辐射板)辐射出的声功率。首先,对具有不同几何和材料特性的双面板的被动声传输进行了参数研究,其次,使用16个分散的直接速度反馈回路实现了主动振动控制。针对四个控制案例评估了这种控制系统的性能。前两种情况涉及带有并置速度传感器的天勾力执行器,它们在源面板或辐射面板上实现主动阻尼。在第三种情况下,两个面板上都装有天钩执行器和并置的速度传感器。最后,考虑一种使用致动器的方法,该致动器在两个面板之间通过并置的相对速度传感器进行反应。

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