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High precise control method for a new type of piezoelectric electro-hydraulic servo valve

机译:新型压电电液伺服阀的高精度控制方法

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摘要

A new type of piezoelectric electro-hydraulic servo valve system was proposed. And then multilayer piezoelectric actuator based on new piezoelectric ceramic material was used as the electricity-machine converter of the proposed piezoelectric electro-hydraulic servo valve. The proposed piezoelectric electro-hydraulic servo valve has ascendant performance compared with conventional ones. But the system is of high nonlinearity and uncertainty, it cannot achieve favorable control performance by conventional control method. To develop an efficient way to control piezoelectric electro-hydraulic servo valve system, a high-precise fuzzy control method with hysteresis nonlinear model in feedforward loop was proposed. The control method is separated into two parts: a feedforward loop with Preisach hysteresis nonlinear model and a feedback loop with high-precise fuzzy control. Experimental results show that the hysteresis loop and the maximum output hysteresis by the PID control method are 4.22%and 2.11 μm, respectively; the hysteresis loop and the maximum output hysteresis by the proposed control method respectively are 0.74% and 0.37 μm, respectively; the maximum tracking error by the PID control method for sine wave reference signal is about 5.02%, the maximum tracking error by the proposed control method for sine wave reference signal is about 0.85%.
机译:提出了一种新型的压电电液伺服阀系统。然后将基于新型压电陶瓷材料的多层压电致动器用作所提出的压电电液伺服阀的电机转换器。所提出的压电电动液压伺服阀与传统的相比具有提升的性能。但是该系统具有较高的非线性度和不确定性,无法通过常规控制方法获得良好的控制性能。为了开发一种控制压电电液伺服阀系统的有效方法,提出了一种具有前馈环滞回非线性模型的高精度模糊控制方法。该控制方法分为两部分:具有Preisach磁滞非线性模型的前馈回路和具有高精度模糊控制的反馈回路。实验结果表明,PID控制方法的磁滞回线和最大输出磁滞分别为4.22%和2.11μm。所提出的控制方法的磁滞回线和最大输出磁滞分别为0.74%和0.37μm。 PID控制方法对正弦波参考信号的最大跟踪误差约为5.02%,所提出的控制方法对正弦波参考信号的最大跟踪误差约为0.85%。

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