Velocity Observer-Based Nonlinear Self-Tuning Position Stabilizer for Ball-Beam System Applications

  • Lee, Chae Rin
  • Park, Jae Kyung
  • Kim, Seok-Kyoon
  • Ahn, Choon Ki
Citations

WEB OF SCIENCE

6
Citations

SCOPUS

6

초록

This brief exhibits a nonlinear self-tuning position stabilization algorithm for ball-beam system applications under the consideration of parameter uncertainties and actuator dynamics.; there are two major contributions. First, a first-order ball velocity estimator is proposed using only the ball position feedback without dependence on system parameters. Second, the resulting nonlinear controller incorporates the time-varying feedback gain driven by the proposed self-tuner. Third, a first-order disturbance observer (DOB) is introduced to remove the high-frequency disturbance attenuation performance. The various simulation results-based-on MATLAB/Simulink validate the practical merits of the proposed scheme.

키워드

ObserversMathematical modelTuningConvergenceClosed loop systemsDC motorsCircuits and systemsBall-beam systemsvelocity observerself-tunerdisturbance observerSLIDING MODE CONTROL
제목
Velocity Observer-Based Nonlinear Self-Tuning Position Stabilizer for Ball-Beam System Applications
저자
Lee, Chae RinPark, Jae KyungKim, Seok-KyoonAhn, Choon Ki
DOI
10.1109/TCSII.2019.2932728
발행일
2020-07
유형
Article
저널명
IEEE Transactions on Circuits and Systems II: Express Briefs
67
7
페이지
1309 ~ 1313