arXiv · 2609.07809
Configuration-Constrained Tube MPC for Difference-of-Convex Nonlinear Systems
Abstract
This paper develops a convex tube model predictive control formulation for constrained nonlinear systems. We consider dynamics described by a discrete-time state-space model with parametric and additive uncertainty that admits a difference-of-convex decomposition. Convex directional bounds of the nonlinear dynamics are combined with configuration-constrained polytopic tubes, whose predefined combinatorial structure yields an affine parameterization of their vertices. The resulting finite-dimensional sufficient conditions certify robust one-step tube propagation under parametric uncertainty and additive disturbances, while allowing the tube geometry and an associated vertex control law to be optimized jointly in a single convex program. An implicit terminal condition guarantees recursive feasibility and convergence of the predicted tube to a target robust control invariant set. Numerical results illustrate the closed-loop properties and the trade-off between geometric flexibility and computational complexity.
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Filippo Badalamenti, Jose A. Borja-Conde, Filiberto Fele, Teodoro Alamo, Daniel Limon. 2026-09-07. Configuration-Constrained Tube MPC for Difference-of-Convex Nonlinear Systems. https://arxiv.org/abs/2609.07809
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