Discrete Time Formulation for the Integration of Scheduling and Dynamic Optimization
Autor: | Yisu Nie, Lorenz T. Biegler, John M. Wassick, Carlos M. Villa |
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Rok vydání: | 2014 |
Předmět: |
Mathematical optimization
Discrete time and continuous time Computer science General Chemical Engineering Two-level scheduling Discrete optimization Scheduling (production processes) General Chemistry Dynamic priority scheduling Industrial and Manufacturing Engineering Fair-share scheduling Scheduling (computing) |
Zdroj: | Industrial & Engineering Chemistry Research. 54:4303-4315 |
ISSN: | 1520-5045 0888-5885 |
DOI: | 10.1021/ie502960p |
Popis: | We propose a model-based optimization approach for the integration of production scheduling and dynamic process operation for general continuous/batch processes. The method introduces a discrete time formulation for simultaneous optimization of scheduling and operating decisions. The process is described by the resource task network (RTN) representation coupled with detailed first-principles process dynamic models. General complications in scheduling and control can be fully represented in this modeling framework, such as customer orders, transfer policies, and requirements on product quality and process safety. The scheduling and operation layers are linked with the task history state variables in the state space RTN model. A tailored generalized Benders decomposition (GBD) algorithm is applied to efficiently solve the resulting large nonconvex mixed-integer nonlinear program by exploring the particular model structure. We apply the integrated optimization approach to a polymerization process with two pa... |
Databáze: | OpenAIRE |
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