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Iterative optimization of the economic efficiency of an industrial process within the validity area of the static plant model and its application to a Pulp Mill

机译:静态工厂模型有效期内工业流程经济效率的迭代优化及其在制浆厂的应用

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摘要

Optimization of the steady state economic efficiency of an industrial process is a specific task because the decision variables of the optimization (setpoints of the control system) affect the process through the control strategy. Thus, the effects of saturation of a control system must be taken into account when the gradient of the objective function is estimated and the necessary optimality conditions are checked. In particular, because the optimality conditions cannot be checked directly in the presence of active constraints on the manipulated variables, approximations of the steady state values of the manipulated variables as functions of the setpoints (static plant model) are needed in order to be able to evaluate the optimality conditions. In this paper an iterative method for optimization of the plant profit rate is proposed avoiding the control saturation and is applied to the Pulp Mill benchmark model optimization. Three different static models describing the steady state values of the manipulated variables are constructed and used in the optimization. The results of the optimization are presented and compared against the straightforward single-step optimization of the plant economic efficiency.
机译:优化工业过程的稳态经济效率是一项特定任务,因为优化的决策变量(控制系统的设定点)会通过控制策略影响过程。因此,当估计目标函数的梯度并检查必要的最佳条件时,必须考虑控制系统的饱和效应。特别是,由于不能在存在对操作变量的有效约束的情况下直接检查最优条件,因此需要能够根据设定值(静态工厂模型)对操作变量的稳态值进行近似估算评估最佳条件。本文提出了一种避免控制饱和的优化工厂利润率的迭代方法,并将其应用于纸浆厂基准模型的优化。构造了三个不同的静态模型来描述受控变量的稳态值,并将其用于优化中。给出了优化的结果,并将其与工厂经济效率的直接单步优化进行了比较。

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