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Maniarski, Robert, 2024, "Source data for: An Optimal Iterative Learning Control Approach for Linear Systems With Nonuniform Trial Lengths Under Input Constraints", https://doi.org/10.18150/SJDUBV, RepOD, V1
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In practical applications of iterative learning control (ILC), the repetitive process may end up early by accident during the performance improvement along the trial axis, which yields the nonuniform trial length problem. For such practical systems, input signals are usually constrained because of some certain physical limitations. This article proposes an optimal ILC algorithm for linear time-invariant multiple-input–multiple-output (MIMO) systems with nonuniform trial lengths under input constraints. The optimal ILC framework is specifically modified for the nonuniform trial length problem, where the primal–dual interior point method is introduced to deal with the input constraints. Hence, the constraint handling capability are improved compared with the conventional counterparts for nonuniform trial lengths. Also, the monotonic convergence property of the proposed optimal ILC algorithm is obtained in the sense of mathematical expectation. Finally, the effectiveness of the proposed algorithm is verified on the numerical simulation of a mobile robot.
Convergence; Uncertainty; Process control; Linear systems; Design methodology; Constraint handling; Trajectory; Input constraint; iterative learning control (ILC); nonuniform trial length; primal–dual interior point method
Zhihe Zhuang; Hongfeng Tao; Yiyang Chen; Vladimir Stojanovic; Wojciech Paszke, An Optimal Iterative Learning Control Approach for Linear Systems With Nonuniform Trial Lengths Under Input Constraints, in IEEE Transactions on Systems, Man, and Cybernetics: Systems, vol. 53, no. 6, pp. 3461-3473, June 2023, ISSN: 2168-2216 https://doi.org/10.1109/TSMC.2022.3225381 doi: https://doi.org/10.1109/TSMC.2022.3225381
CC BY - Creative Commons Attribution 4.0
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