DOE OSTI · 1800882
A direct transcription-based multiple shooting formulation for dynamic optimization
Abstract
The growing need for fast and efficient solution techniques for solving dynamic optimization problems is driven by a broad spectrum of applications in scheduling and control. We suggest a novel framework for dynamic optimization that utilizes a multiple shooting “backbone” with discrete rather than continuous subproblems, thereby eliminating need for repeated time-integration. A Lagrangian relaxation (LR)-based decomposition scheme is proposed, which dualizes the state continuity requirements between subproblems and enables parallel solution of the problem. We demonstrate the applicability of our method on two case studies: the Van der Pol oscillator and a batch reactor.
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Kelley, Morgan T., Baldick, Ross, Baldea, Michael. 2020-05-30. A direct transcription-based multiple shooting formulation for dynamic optimization. https://doi.org/10.1016/j.compchemeng.2020.106846
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