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Integrated process design, scheduling, and model predictive control of batch processes with closed-loop implementation

机译:具有闭环实现的批量流程的集成过程设计,调度和模型预测控制

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Simultaneous evaluation of multiple time scale decisions has been regarded as a promising avenue to increase the process efficiency and profitability through leveraging their synergistic interactions. Feasibility of such an integral approach is essential to establish a guarantee for operability of the derived decisions. In this study, we present a modeling methodology to integrate process design, scheduling, and advanced control decisions with a single mixed-integer dynamic optimization (MIDO) formulation while providing certificates of operability for the closed-loop implementation. We use multi-parametric programming to derive explicit expressions for the model predictive control strategy, which is embedded into the MIDO using the base-2 numeral system that enhances the computational tractability of the integrated problem by exponentially reducing the required number of binary variables. Moreover, we apply the State Equipment Network representation within the MIDO to systematically evaluate the scheduling decisions. The proposed framework is illustrated with two batch processes with different complexities.
机译:同时评估多次规模决策被认为是一个有希望的途径,通过利用其协同互动来提高流程效率和盈利能力。这种不可分割方法的可行性对于确定所派生决策的可操作性保证至关重要。在这项研究中,我们提出了一种模拟方法,以将过程设计,调度和高级控制决策集成了单一混合整数动态优化(MIDO)配方,同时提供闭环实现的可操作性。我们使用多个参数编程来导出模型预测控制策略的显式表达式,该模型预测控制策略使用基本-2标号系统嵌入到MIDo中,通过指数地减少所需的二进制变量来增强集成问题的计算途径。此外,我们在MIDo内应用国家设备网络表示以系统地评估调度决策。所提出的框架用两种具有不同复杂性的批处理过程说明。

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