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Application of plantwide control to the HDA process. I-steady-state optimization and self-optimizing control

机译:全厂范围控制在HDA流程中的应用。稳态优化和自优化控制

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This paper describes the application of self-optimizing control to a large-scale process, the HDA plant. The idea is to select controlled variables which when kept constant lead to minimum economic loss. First, the optimal active constraints need to be controlled. Next, controlled variables need to be found for the remaining unconstrained degrees of freedom. In order to avoid the combinatorial problem related to the selection of outputs/measurements for such large plants, a local (linear) analysis based on singular value decomposition (SVD) is used for pre-screening. This is followed by a more detailed analysis using the nonlinear model. Note that a steady-state model, in this case one built in Aspen Plus™, is sufficient for selecting controlled variables. A dynamic model is required to design and test the complete control system which include regulatory control. This is considered in the part II of the series.
机译:本文描述了自优化控制在大型过程HDA工厂中的应用。想法是选择控制变量,当这些变量保持恒定时,可将经济损失降至最低。首先,需要控制最佳主动约束。接下来,需要为剩余的不受约束的自由度找到受控变量。为了避免与此类大型工厂的输出/度量选择相关的组合问题,基于奇异值分解(SVD)的局部(线性)分析用于预筛选。接下来是使用非线性模型的更详细的分析。请注意,稳态模型(在这种情况下为Aspen Plus™内置模型)足以选择受控变量。设计和测试包括调节控制在内的整个控制系统需要动态模型。本系列的第二部分对此进行了讨论。

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