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On the maximum damping performance of piezoelectric switching techniques

机译:压电开关技术的最大阻尼性能

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摘要

Synchronized switch damping on inductor offers a high damping performance in a broad frequency range. It consists of an inductor and resistor in a serial configuration, which are connected and disconnected from the piezoceramics in an alternating manner by a switch. When the switch is triggered by the vibration itself, it adapts to different excitation frequencies especially in the low frequency range. This article presents a detailed study of the damping performance of the synchronized switch damping on inductor technique. Calculations are performed in a normalized way. The optimal tuning of synchronized switch damping on inductor network parameters is derived, and the corresponding maximum damping performance is obtained. The results are further compared to standard linear inductance-resistance networks. For a validation of the theoretical results, measurements on a clamped beam test rig are performed. Therefore, the synchronized switch damping on inductor circuit is realized as a synthetic impedance in a DSpace environment. The measurement results are in good agreement with the theoretical calculations. © The Author(s) 2012.
机译:电感上的同步开关阻尼可在很宽的频率范围内提供较高的阻尼性能。它由串联配置的电感器和电阻器组成,它们通过开关以交替方式与压电陶瓷连接和断开。当开关由振动本身触发时,它会适应不同的激励频率,尤其是在低频范围内。本文详细介绍了基于电感器技术的同步开关阻尼的阻尼性能。计算以规范化方式执行。推导了基于电感网络参数的同步开关阻尼的最优调整,并获得了相应的最大阻尼性能。将结果进一步与标准线性电感-电阻网络进行比较。为了验证理论结果,在夹紧梁试验台上进行了测量。因此,电感器电路上的同步开关阻尼在DSpace环境中实现为合成阻抗。测量结果与理论计算吻合良好。 ©作者2012。

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