paper-with-me

홈 › Papers

Iterative Learning Control with Mismatch Compensation for Residual Vibration Suppression in Delta Robots

2024-11-12 · Mingkun Wu, Alisa Rupenyan, Burkhard Corves

Unwanted vibrations stemming from the energy-optimized design of Delta robots pose a challenge in their operation, especially with respect to precise reference tracking. To improve tracking accuracy, this paper proposes an adaptive mismatch-compensated iterative learning controller based on input shaping techniques. We establish a dynamic model considering the electromechanical rigid-flexible coupling of the Delta robot, which integrates the permanent magnet synchronous motor. Using this model, we design an optimization-based input shaper, considering the natural frequency of the robot, which varies with the configuration. We proposed an iterative learning controller for the delta robot to improve tracking accuracy. Our iterative learning controller incorporates model mismatch where the mismatch approximated by a fuzzy logic structure. The convergence property of the proposed controller is proved using a Barrier Composite Energy Function, providing a guarantee that the tracking errors along the iteration axis converge to zero. Moreover, adaptive parameter update laws are designed to ensure convergence. Finally, we perform a series of high-fidelity simulations of the Delta robot using Simscape to demonstrate the effectiveness of the proposed control strategy.

📄 PDF Abstract BibTeX arXiv:2411.07862

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Reinforcement Learning Approach to Vibration Compensation for Dynamic Feed Drive Systems

2020-04-14 · Ralf Gulde, Marc Tuscher, Akos Csiszar, Oliver Riedel 외

Vibration compensation is important for many domains. For the machine tool industry it translates to higher machining precision and longer component lifetime. Current methods for vibration damping have their shortcomings…

reinforcement-learningReinforcement LearningReinforcement Learning (RL)

Vibration-Assisted Hysteresis Mitigation for Achieving High Compensation Efficiency

2025-03-04 · Myeongbo Park, Chunggil An, Junhyun Park, Jonghyun Kang 외

Tendon-sheath mechanisms (TSMs) are widely used in minimally invasive surgical (MIS) applications, but their inherent hysteresis-caused by friction, backlash, and tendon elongation-leads to significant tracking errors. C…

Friction

Robust Input Shaping Vibration Control via Extended Kalman Filter-Incorporated Residual Neural Network

2024-08-22 · Weiyi Yang, Shuai Li, Xin Luo

With the rapid development of industry, the vibration control of flexible structures and underactuated systems has been increasingly gaining attention. Input shaping technology enables stable performance for high-speed m…

Improvement of Frequency Source Phase Noise Reduction Design under Vibration Condition

2024-02-06 · Liwei Yin, Yongjiang Shu, Heng Zhang, Yuefei Dai 외

Reasonable vibration reduction design is an important way to achieve low phase noise index of airborne frequency source output signal. Aiming at the problem of phase noise deterioration of an airborne frequency source un…

Learning-Based Repetitive Precision Motion Control with Mismatch Compensation

2021-11-19 · Efe C. Balta, Kira Barton, Dawn M. Tilbury, Alisa Rupenyan 외

Learning-based control methods utilize run-time data from the underlying process to improve the controller performance under model mismatch and unmodeled disturbances. This is beneficial for optimizing industrial process…

GPR