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Self-sensing actuation using online capacitance measurement with application to active vibration control

机译:使用在线电容测量的自感应致动,应用于主动振动控制

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Self-sensing actuation has been extensively used in vibration control of flexible structures over the last three decades. Positive position feedback controller has been commonly used in this field due to the robustness against spillover phenomena. Piezoelectric clamped capacitance is the most important parameter that affects the performance of this technique. In this study, the effect of capacitance change on performance and stability of a self-sensing system with positive position feedback controller is investigated. Based on this analysis, some modifications are suggested to increase the stability of the closed-loop system against capacitance change. An online Fourier transform-based capacitance measurement method is used, which guarantees good performance and stability of closed-loop system in the presence of capacitance change. Experimental results are also presented to show the effectiveness of this method in vibration control of cantilever beam.
机译:在过去的三十年中,自感应驱动已广泛用于柔性结构的振动控制中。正位置反馈控制器由于其对溢出现象的鲁棒性而被广泛用于这一领域。压电钳位电容是影响该技术性能的最重要参数。在这项研究中,研究了电容变化对具有正位置反馈控制器的自感应系统的性能和稳定性的影响。基于此分析,建议进行一些修改以提高闭环系统抵抗电容变化的稳定性。使用基于在线傅立叶变换的电容测量方法,该方法可确保在存在电容变化的情况下闭环系统具有良好的性能和稳定性。实验结果也表明了该方法在悬臂梁振动控制中的有效性。

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