Two adaptive robust sliding mode controllers for robot manipulators
T. Furuta, Ken Tomiyama
- Year
- 2002
- Citations
- 4
Abstract
Sliding mode controllers are known to be able to achieve robustness against modeling errors, plant disturbances, and plant parameter variations. They, however, require upper-bounds of uncertainties in plant parameters to specify feedback gains that realize robustness. These upper-bounds are often chosen conservatively and, as a result, high feedback gains and oscillations, called chattering, occur. Recently, online identification of the upper-bounds of uncertainties have been successfully incorporated into sliding mode regulators to alleviate the chattering. We propose to extend this to two types of controllers, named adaptive robust sliding mode controllers, for trajectory control of robot manipulators. The stability properties of the proposed controllers are demonstrated using Lyapunov functions and are implemented onto a PUMA type manipulator. Performances of those controllers are compared with that of regular sliding mode controllers. The result showed excellent robustness combined with chattering suppressing capability of the proposed controllers.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
Keywords
Related papers
Statistical Learning Theory
Yuhai Wu, Vladimir Vapnik
1999
Artificial intelligence: a modern approach
1995
Applied Nonlinear Control
Jean-Jacques Slotine, Weiping Li
1991
A new optimizer using particle swarm theory
R.C. Eberhart, James Kennedy
2002