Abstract
This paper presents a simple and straightforward design of a discrete-time fractional-order odd-harmonics repetitive controller (RC). Unlike general RC designs, the proposed method utilizes an internal model with a half-period delay and a stabilizing controller with a fractional phase lead compensator. First, the odd-harmonics internal model representing odd-harmonics frequencies is constructed by using the information of the reference’s basis period and the preferred tracking bandwidth. Secondly, an optimization problem synthesized from the stability condition of the RC closed-loop system is solved to obtain the fractional phase lead compensator. Finally, the fractional term of the stabilizing controller is realized by using a causal and stable infinite impulse response (IIR) filter, where the filter coefficients are computed by applying the Thiran formula. Simulation and experimental validation on a servomotor system are conducted to verify the effectiveness of the proposed design.
Funder
Research Center for Photonics, National Research and Innovation Agency (BRIN), Indonesia
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry
Reference33 articles.
1. Inoue, T., Nakano, M., and Iwai, S. (1981, January 24–28). High accuracy control of a proton synchrotron magnet power supply. Proceedings of the 8th world congress IFAC, Kyoto, Japan.
2. Moore, K.L., and Chen, Y. (2006, January 25–28). Iterative Learning Control Approach to a Diffusion Control Problem in an Irrigation Application. Proceedings of the International Conference on Mechatronics and Automation, Luoyang, China.
3. Iterative Learning Control of Dam-river Channel Irrigation Systems;J. Guangxi Norm. Univ. Nat. Sci. Ed.,2018
4. Yao, Q., Jahanshahi, H., Bekiros, S., Mihalache, S.F., and Alotaibi, N.D. (2022). Gain-Scheduled Sliding-Mode-Type Iterative Learning Control Design for Mechanical Systems. Mathematics, 10.
5. Attenuation of position-dependent periodic disturbance for rotary machines by improved spatial repetitive control with frequency alignment;IEEE/ASME Trans. Mechatronics,2020
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