位置和速度控制系统中的摩擦补偿方法

D. Stajic, N. Peric, J. Deur
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引用次数: 13

摘要

摩擦出现在受控电气传动的轴承和减速齿轮中,并影响位置,速度或力控制的质量。通过实现加速度反馈,可以提高伺服系统的性能。由于加速度测量通常是不可能的或不实际的,因此提出了由观测器或速度微分来实现加速度估计的方法。另一种摩擦影响补偿方法是基于扰动观测器。它的优点是可以广泛地应用于各种干扰的估计。本文讨论了不以摩擦模型为基础,而是以摩擦作为扰动进行补偿的摩擦补偿方法。通过计算机仿真和伺服系统实验室模型的实验,比较了这些方法在具有斯特里贝克摩擦的伺服驱动中的效率。
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Friction compensation methods in position and speed control systems
Friction appears in the bearings and reduction gear of controlled electrical drives and affects the quality of the position, speed or force control. The servosystem performance can be improved by implementation of acceleration feedback. For the reason that acceleration measurement is often either not possible or practical, the implementation of acceleration estimation by an observer or differentiation of speed is proposed. Another approach to friction influence compensation is based on the disturbance observer. Its advantage is that it can be applied generally to the estimation of various disturbances. This paper deals with these friction compensation methods which are not based on friction model, but on the compensation of friction as a disturbance. The efficiency of these methods in a servodrive with Stribeck friction is compared by computer simulation and experimentally on a servosystem laboratory model.
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