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arxiv: 1407.5427 · v1 · pith:M3XAH7LQnew · submitted 2014-07-21 · 🧮 math.OC

A Parametric Multi-Convex Splitting Technique with Application to Real-Time NMPC

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keywords nmpcparametriccontrolreal-timesplittingalternatingapplicationassuming
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A novel splitting scheme to solve parametric multiconvex programs is presented. It consists of a fixed number of proximal alternating minimisations and a dual update per time step, which makes it attractive in a real-time Nonlinear Model Predictive Control (NMPC) framework and for distributed computing environments. Assuming that the parametric program is semi-algebraic and that its KKT points are strongly regular, a contraction estimate is derived and it is proven that the sub-optimality error remains stable if two key parameters are tuned properly. Efficacy of the method is demonstrated by solving a bilinear NMPC problem to control a DC motor.

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