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Componentwise Holder Inference for Robust Learning-Based MPC

delete2021-11-01
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J
José María Manzano *
D
David Muñoz de la Peña
J
Jan-Peter Calliess
D
Daniel Limón
DOI:10.1109/TAC.2021.3056356delete
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Abstract

Abstract

En 中文
This article presents a novel learning method based on componentwise Holder continuity, which allows one to consider independently the contribution of each input to each output of the function to be learned. The method provides a bounded prediction error, and its learning property is proven. It can be used to obtain a predictor for a nonlinear robust learning-based predictive controller for constrained systems. The resulting controller achieves better closed loop performance and larger domains of attraction than learning methods that only consider nonlinear set membership, as illustrated by a case study.
Keywords:
Learning systems
Predictive models
Estimation
Uncertainty
Standards
Prediction algorithms
Interpolation
Inference algorithms
machine learning
nonlinear systems
predictive control
robust stability
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Journal

IEEE Transactions on Automatic Control cover
IEEE Transactions on Automatic Control
IF:
7
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1.3W
Citations:
6.7W

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universidad loyola andalucia
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