A comparison of Sliding Mode approaches to a nanometre position control application

P. Stadler, S. Dodds
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引用次数: 1

Abstract

A vacuum air bearing based linear drive is presented that is capable of precision positioning with a relative accuracy of a few nanometres. Three different control systems embodying sliding mode control (SMC) are compared by simulation and experiment regarding their individual positioning performance. The three control designs investigated are high gain SMC, a first order and a second order version of outer loop SMC where the inner loop consists of a forced dynamic control law (FDC, a special form of state space controller) applied to the linear drive to be positioned.
滑模方法在纳米位置控制中的应用比较
提出了一种基于真空空气轴承的线性驱动,能够以几纳米的相对精度进行精确定位。通过仿真和实验比较了三种不同的滑模控制系统各自的定位性能。所研究的三种控制设计是高增益SMC,一阶和二阶版本的外环SMC,其中内环由应用于待定位线性驱动器的强制动态控制律(FDC,一种特殊形式的状态空间控制器)组成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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