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Piezoelectric stack actuator parameter extraction with hysteresis compensation

机译:带有滞后补偿的压电堆栈执行器参数提取

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The Piezoelectric Actuator Drive (PAD) is a type of rotary motor that transforms the linear motion of piezoelectric stack actuators into a precise rotational motion. The very high stiffness of the actuators employed make this type of motor suited for open-loop control, but the inherent hysteresis exhibited by piezoelectric ceramics causes losses. Therefore, this paper presents a straightforward method to measure piezoelectric stack actuator equivalent parameters that includes nonlinearities. By folding the nonlinearities into a newly-defined coupling coefficient, the inherent hysteretic behavior of piezoelectric stack actuators can be greatly reduced through precompensation. Experimental results show a fitting accuracy of 98.8 % between the model and measurements and a peak absolute error reduction by a factor of 10 compared to the manufacturer-provided parameter. This method improves both the static and dynamic performance of the Piezoelectric Actuator Drive (PAD) while still permitting open-loop control.
机译:压电执行器驱动器(PAD)是一种旋转电机,可将压电堆栈执行器的线性运动转换为精确的旋转运动。所用致动器的极高刚度使这种类型的电动机适合于开环控制,但压电陶瓷表现出的固有滞后性会造成损耗。因此,本文提出了一种简单的方法来测量包括非线性在内的压电堆致动器的等效参数。通过将非线性折叠成新定义的耦合系数,可以通过预补偿大大降低压电叠层执行器的固有滞后行为。实验结果表明,模型与测量值之间的拟合精度为98.8%,与制造商提供的参数相比,峰值绝对误差降低了10倍。这种方法可以改善压电执行器驱动器(PAD)的静态和动态性能,同时仍然可以进行开环控制。

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