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首页> 外文期刊>AIChE Journal >Simultaneous Process Synthesis and Control Design under Uncertainty: A Worst-Case Performance Approach
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Simultaneous Process Synthesis and Control Design under Uncertainty: A Worst-Case Performance Approach

机译:不确定性下的同时过程综合与控制设计:最坏情况下的性能评估方法

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摘要

A new methodology that includes process synthesis and control structure decisions for the optimal process and control design of dynamic systems under uncertainty is presented. The method integrates dynamic flexibility and dynamic feasibility in a single optimization formulation, thus, reducing the costs to assess the optimal design. A robust stability test is also included in the proposed method to ensure that the optimal design is stable in the presence of magnitude-bounded perturbations. Since disturbances are treated as stochastic time-discrete unmeasured inputs, the optimal process synthesis and control design specified by this method remains feasible and stable in the presence of the most critical realizations in the disturbances. The proposed methodology has been applied to simultaneously design and control a system of CSTRs and a ternary distillation column. A study on the computational costs associated with this method is presented and compared to that required by a dynamic optimization-based scheme.
机译:提出了一种新的方法论,包括不确定性条件下动态系统的最优过程和控制设计的过程综合和控制结构决策。该方法将动态灵活性和动态可行性集成在单个优化公式中,从而减少了评估最佳设计的成本。所提出的方法还包括鲁棒的稳定性测试,以确保最优设计在存在幅度界扰动的情况下是稳定的。由于扰动被视为随机的,时间离散的,无法测量的输入,因此,在存在扰动最关键的实现的情况下,此方法指定的最佳过程综合和控制设计仍然可行且稳定。所提出的方法已被应用于同时设计和控制CSTRs系统和三元蒸馏塔的系统。提出了与该方法相关的计算成本的研究,并将其与基于动态优化的方案所需的计算成本进行了比较。

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