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Electrohydraulic linear actuator with two stepping motors controlled by overshoot-free algorithm

机译:由无过冲算法控制的带有两个步进电机的电动液压线性执行器

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The paper describes electrohydraulic spool valves with stepping motors used as electromechanical transducers. A new concept of a proportional valve in which two stepping motors are working differentially is introduced. Such valve changes the fluid flow proportionally to the sum or difference of the motors' steps numbers. The valve design and principle of its operation is described. Theoretical equations and simulation models are proposed for all elements of the drive, i.e., the stepping motor units, hydraulic valve and cylinder. The main features of the valve and drive operation are described; some specific problem areas covering the nature of stepping motors and their differential work in the valve are also considered. The whole servo drive non-linear model is proposed and used further for simulation investigations. The initial simulation investigations of the drive with a new valve have shown that there is a significant overshoot in the drive step response, which is not allowed in positioning process. Therefore additional effort is spent to reduce the overshoot and in consequence reduce the settling time. A special predictive algorithm is proposed to this end. Then the proposed control method is tested and further improved in simulations. Further on, the model is implemented in reality and the whole servo drive system is tested. The investigation results presented in this paper, are showing an overshoot-free positioning process which enables high positioning accuracy.
机译:本文介绍了带有步进电机的电动液压滑阀,用作机电换能器。引入了比例阀的新概念,其中两个步进电机差速工作。这种阀会根据电机步数的总和或差成比例地改变流体流量。描述了阀门的设计及其工作原理。针对驱动器的所有元件(即步进电机单元,液压阀和液压缸)提出了理论方程式和仿真模型。描述了阀的主要特征和驱动操作;还考虑了一些特定的问题领域,这些问题涉及步进电机的性质及其在阀中的差功。提出了整个伺服驱动器非线性模型,并将其进一步用于仿真研究。对带有新阀的驱动器的初始仿真研究表明,驱动器阶跃响应存在明显的过冲,这在定位过程中是不允许的。因此,要花费额外的精力来减少过冲,从而减少建立时间。为此,提出了一种特殊的预测算法。然后对提出的控制方法进行了测试,并在仿真中进行了进一步的改进。进一步地,该模型在实际中实现,并对整个伺服驱动系统进行了测试。本文给出的调查结果显示,定位过程无过冲,可实现较高的定位精度。

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