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Adaptive piezoelectric shunt damping

机译:自适应压电并联阻尼

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Piezoelectric shunt damping systems reduce structural vibration by shunting an attached piezoelectric transducer with an electrical impedance. Current impedance designs result in a coupled electrical resonance at the target modal frequencies. In practical situations, variation in structural load or environmental conditions can result in significant changes in the structural resonance frequencies. This variation can severely reduce shunt damping performance as the electrical impedance remains tuned to the nominal resonance frequencies. This paper introduces a method for online adaptation of the shunting impedance. A reconstructed estimate of the RMS strain is minimized by varying the component values of a synthetic shunt damping circuit. The techniques presented are applied in real time to tune the component values of a randomly excited beam.
机译:压电分流阻尼系统通过以电阻抗分流连接的压电换能器来减少结构振动。电流阻抗设计导致目标模态频率下的耦合电谐振。在实际情况下,结构载荷或环境条件的变化会导致结构共振频率发生重大变化。这种变化会严重降低分流阻尼性能,因为电阻抗仍需调整到标称谐振频率。本文介绍了一种在线自适应分流阻抗的方法。通过改变合成并联阻尼电路的元件值,可以将RMS应变的重构估计值降至最低。提出的技术可以实时应用,以调整随机激发光束的分量值。

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