Title :
A High-Precision Motion Control Based on a Periodic Adaptive Disturbance Observer in a PMLSM
Author :
Kwanghyun Cho ; Jonghwa Kim ; Seibum Ben Choi ; Sehoon Oh
Author_Institution :
Dept. of Mech. Eng., Korea Adv. Inst. of Sci. & Technol., Daejeon, South Korea
Abstract :
This paper presents a novel disturbance compensation scheme to attenuate periodic disturbances on repetitive motion using permanent magnet linear synchronous motors (PMLSMs), and this scheme is called the periodical adaptive disturbance observer. The scheme is based on assumptions that all measured states and disturbances are periodic and repetitive when the tasks executed by PMLSM motion systems have periodic and repetitive characteristics. In the proposed control scheme, a lumped disturbance is estimated by the classical linear disturbance observer (DOB) for the initial time period and stored in memory storages. It consists of parametric errors multiplied by states, friction force, and force ripple, and then, it is updated for each time period by the periodic adaptation law. This scheme requires no mathematical models of disturbances and adaptation laws of model parameters such as the mass of the mover and viscous friction coefficient. Also, it is possible to compensate for disturbances above as well as below the bandwidth of the Q-filter (LPF) of DOB. The effectiveness of the proposed control scheme is verified by various experiments that take into account varying frequency components of disturbances along the operating speed of a mover of PMLSM such as force ripple and friction force.
Keywords :
adaptive control; friction; linear synchronous motors; machine control; motion control; observers; periodic control; permanent magnet motors; DOB; LPF; PMLSM motion system; Q-filter bandwidth; classical linear disturbance observer; disturbance compensation scheme; force ripple; friction force; high-precision motion control; lumped disturbance estimation; memory storage; mover operating speed; parametric error; periodic adaptation law; periodic adaptive disturbance observer; periodic characteristics; periodic disturbance attenuation; permanent magnet linear synchronous motors; repetitive characteristics; repetitive motion; viscous friction coefficient; Adaptation models; Bandwidth; Force; Friction; Manganese; Observers; Partial transmit sequences; (DOB); Adaptation; disturbance observer; force ripple compensation; periodic disturbance;
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
DOI :
10.1109/TMECH.2014.2365996