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Modeling and Control with Hysteresis of Piezoelectric Smart Materials Actuators

机译:压电智能材料执行器滞后的建模与控制

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Hysteresis hinders the effective use of piezoelectric smart materials in sensors and actuators. This paper proposes a hybrid model that can precisely portray hysteresis in piezoelectric actuators, which is constructed by a preisach operator with a piecewise uniform density function. Then, the corresponding inverse model for hysteresis is developed. It studies online recursive identification of hysteresis drift. Based on the obtained models, a method for simultaneous compensation of the hysteresis of piezoelectric actuator is applied to the control of system nonlinearities. Simulation and experimental results based on an IPMC actuator are provided to illustrate the proposed approach. The result verified the validity of the model and effectiveness of the controller.
机译:滞后阻碍了传感器和执行器中的压电智能材料的有效使用。本文提出了一种混合模型,其可以精确地描绘压电致动器中的滞后,该压电致动器由Preisach操作者构造,具有分段均匀的密度函数。然后,开发了对滞后的相应逆模型。 IT研究滞后漂移的在线递归识别。基于所获得的模型,将用于同时补偿压电致动器的滞后的方法应用于系统非线性的控制。提供了基于IPMC执行器的模拟和实验结果,以说明所提出的方法。结果验证了控制器的模型和有效性的有效性。

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