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Research on Asymmetric Hysteresis Modeling and Compensation of Piezoelectric Actuators with PMPI Model

机译:PMPI模型对压电执行器非对称滞后建模与补偿的研究

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摘要

Because of fast frequency response, high stiffness, and displacement resolution, the piezoelectric actuators (PEAs) are widely used in microano driving field. However, the hysteresis nonlinearity behavior of the PEAs affects seriously the further improvement of manufacturing accuracy. In this paper, we focus on the modeling of asymmetric hysteresis behavior and compensation of PEAs. First, a polynomial-modified Prandtl–Ishlinskii (PMPI) model is proposed for the asymmetric hysteresis behavior. Compared with classical Prandtl–Ishlinskii (PI) model, the PMPI model can be used to describe both symmetric and asymmetric hysteresis. Then, the congruency property of PMPI model is analyzed and verified. Next, based on the PMPI model, the inverse model (I-M) compensator is designed for hysteresis compensation. The stability of the I-M compensator is analyzed. Finally, the simulation and experiment are carried out to verify the accuracy of the PMPI model and the I-M compensator. The results implied that the PMPI model can effectively describe the asymmetric hysteresis, and the I-M compensator can well suppress the hysteresis characteristics of PEAs.
机译:由于快速的频率响应,高的刚度和位移分辨率,压电致动器(PEA)被广泛用于微/纳米驱动领域。但是,PEA的磁滞非线性行为严重影响了制造精度的进一步提高。在本文中,我们专注于非对称磁滞行为的建模和PEA的补偿。首先,针对非对称磁滞行为,提出了多项式修正的Prandtl–Ishlinskii(PMPI)模型。与经典的Prandtl–Ishlinskii(PI)模型相比,PMPI模型可用于描述对称和非对称磁滞。然后,分析和验证了PMPI模型的一致性特性。接下来,基于PMPI模型,设计逆模型(I-M)补偿器以进行磁滞补偿。分析了I-M补偿器的稳定性。最后,通过仿真和实验验证了PMPI模型和I-M补偿器的准确性。结果表明,PMPI模型可以有效地描述非对称磁滞,而I-M补偿器可以很好地抑制PEA的磁滞特性。

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