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Simultaneous optimization of batch process schedules and water-allocation network

机译:同时优化批处理计划和水分配网络

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A systematic design methodology is developed in this work for optimizing batch process schedules and water-allocation network in a simultaneous manner. The proposed model formulation is believed to be superior to the available ones in the following aspects. In the first place, a continuous-time based batch process scheduling model is introduced. Then, an improved state space superstructure is adopted to capture the structural characteristics of the integrated water-allocation network for batch process, and a mixed-integer nonlinear program (MINLP) is formulated accordingly. In addition, costs of splitters and mixers are added to evaluate and reduce the complexity of the network configuration. Finally, a hybrid optimization strategy integrating DICOPT and GA is developed and, also, an interactive iteration method is adopted based on sensitivity analysis to guide the search toward a potential global optimum. One illustrative example is presented to demonstrate the validity and advantages of the proposed approach.
机译:在这项工作中开发了系统的设计方法,以同时优化批处理过程计划和水分配网络。在以下方面,所提出的模型公式被认为优于可用的模型公式。首先,引入了基于连续时间的批处理调度模型。然后,采用改进的状态空间上层建筑来捕获用于批处理的集成水分配网络的结构特征,并据此制定混合整数非线性程序(MINLP)。另外,增加了分离器和混频器的成本,以评估和降低网络配置的复杂性。最后,开发了一种集成了DICOPT和GA的混合优化策略,并且还采用了基于敏感性分析的交互式迭代方法,将搜索导向潜在的全局最优方法。给出了一个说明性示例,以证明所提出方法的有效性和优势。

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