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Multiple-model based predictive control of nonlinear hybrid systems based on global optimization using the Bernstein polynomial approach
Authors:Bhagyesh V. Patil  Sharad Bhartiya  P.S.V. Nataraj  Naresh N. Nandola
Affiliation:1. Systems and Control Engineering Group, Indian Institute of Technology Bombay, Mumbai 400 076, India;2. Department of Chemical Engineering, Indian Institute of Technology Bombay, Mumbai 400 076, India;3. ABB Global Industries and Services Ltd., Whitefield Road, Bangalore 560 048, India
Abstract:In this paper, we propose a Bernstein polynomial based global optimization algorithm for the optimal feedback control of nonlinear hybrid systems using a multiple-model approach. Specifically, we solve at every sampling instant a polynomial mixed-integer nonlinear programming problem arising in the model predictive control strategy. The proposed algorithm uses the Bernstein polynomial form in a branch-and-bound framework, with new ingredients such as branching for integer decision variables and fathoming for each subproblem in the branch-and-bound tree. The performance of the proposed algorithm is tested and compared with existing algorithms on a benchmark three-spherical tank system. The test results show the superior performance of the proposed algorithm.
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