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Stability and Performance of a Smart Double Panel with Decentralized Active Dampers

机译:分散有源阻尼器的智能双面板的稳定性和性能

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This paper presents a theoretical study of active control of sound transmission through a double panel using decentralized active dampers acting between the two panels. The double panel consists of a thin aluminum plate (the source panel) and a polymer honeycomb plate (the radiating panel), coupled structurally by elastic mounts and coupled acoustically by the air confined in a shallow cavity between the plates. The control forces are applied using a 4×4 regular array of actuators located in the cavity, which can react between the two plates. Each actuator end is equipped with a velocity sensor. The two junction-velocity signals are weighted and combined into error signals. By varying the weighting factor, a variety of error signals can be created. The impact of the weighting factor on the performance of the control and the stability of the feedback loops is investigated. It was found that the range of weighting factors for which the feedback loops are unconditionally stable is limited, and the performance of the active control depends upon the weighting factor used.
机译:本文提出了一种理论研究,该理论研究了通过使用两个面板之间的分散式主动阻尼器来主动控制双面板声音传输。双层板由薄铝板(源板)和聚合物蜂窝板(散热板)组成,它们通过弹性支架在结构上耦合,并通过封闭在板之间的浅腔中的空气进行声耦合。控制力是使用位于空腔中的4×4规则执行器阵列施加的,它们可以在两个板之间起反作用。执行器的每个端部均配有速度传感器。两个结速度信号被加权并组合成误差信号。通过改变加权因子,可以产生各种误差信号。研究了加权因子对控制性能和反馈回路稳定性的影响。已经发现,反馈回路无条件稳定的加权因子的范围是有限的,并且主动控制的性能取决于所使用的加权因子。

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