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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Integral resonant damping for high-bandwidth control of piezoceramic stack actuators with asymmetric hysteresis nonlinearity
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Integral resonant damping for high-bandwidth control of piezoceramic stack actuators with asymmetric hysteresis nonlinearity

机译:具有非对称磁滞非线性的压电谐振器高带宽控制的整体共振阻尼

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摘要

This paper presents a novel control scheme for high-bandwidth control of piezoceramic stack actuators (PSAs). For this purpose, we first characterize and compensate for the asymmetric hysteresis nonlinearity of the PSA. A linear integral resonant controller is then designed as a means for damping the resonant modes of the dynamic system with the hysteresis compensation. Finally, a tracking controller and feedforward input are developed to minimize the tracking errors and improve the closed-loop tracking bandwidth. To verify the effectiveness and efficiency of the proposed control scheme, a PSA-actuated positioning platform is built and comparative experiments are conducted. Experimental results demonstrate that the proposed controller achieves robust broadband nanopositioning of the PSA by improving the tracking bandwidth from 22 Hz (with an integral controller) to 657 Hz.
机译:本文提出了一种新型的压电陶瓷堆栈致动器(PSA)的高带宽控制方案。为此,我们首先表征和补偿PSA的非对称磁滞非线性。然后,将线性积分谐振控制器设计为一种用于通过滞后补偿来衰减动态系统谐振模式的装置。最终,开发了跟踪控制器和前馈输入,以最大程度地减小跟踪误差并改善闭环跟踪带宽。为了验证所提出控制方案的有效性和效率,建立了PSA驱动的定位平台并进行了对比实验。实验结果表明,所提出的控制器通过将跟踪带宽从22 Hz(带集成控制器)提高到657 Hz,实现了PSA的强大宽带纳米定位。

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