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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Control of a dual stage magnetostrictive actuator and linear motor feed drive system
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Control of a dual stage magnetostrictive actuator and linear motor feed drive system

机译:双级磁致伸缩执行器和线性电机进给驱动系统的控制

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摘要

A dual stage feed drive system is well suited to satisfying current demands of high performance machining with tight position control under high feed rates in the presence of disturbances. It does this by integrating an actuator with high position resolution and fast response together with a conventional linear drive. A magnetostrictive actuator (MA) with a bandwidth in the kHz range capable of several kN of force output is an ideal candidate for use as the fine positioning element in such a dual stage system. However, MAs display significant hysteresis in their performance. This makes the effective implementation of real-time fast servo control challenging. In this paper, a dynamic Preisach model is utilized to reduce the undesired nonlinearity. A sliding mode controller (SMC) is designed to deal with uncertainties such as the Preisach modeling error as well as external disturbances so as to ensure a robust stable system. Experimental results show the servo performance improvement during a feed step test for single axis control and a single axis component of a sharp path interpolation test.
机译:双级进给驱动系统非常适合满足当前对高性能加工的需求,并在存在干扰的情况下在高进给率下进行严格的位置控制。它通过将具有高位置分辨率和快速响应的执行器与常规线性驱动器集成在一起来实现此目的。磁致伸缩执行器(MA)的带宽在kHz范围内,能够输出几kN的力,是在这种双级系统中用作精细定位元件的理想选择。但是,MA在其性能上显示出明显的滞后现象。这使得实时快速伺服控制的有效实施具有挑战性。在本文中,使用动态Preisach模型来减少不希望的非线性。滑模控制器(SMC)设计用于处理不确定性,例如Preisach建模误差以及外部干扰,以确保系统稳定可靠。实验结果表明,在进给阶跃测试中,单轴控制和锋利路径插补测试中的单轴组件的伺服性能得到了改善。

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