首页> 外文会议>Industrial Technology, 2009. ICIT 2009 >Robust Closed-Loop Real-Time Optimization for refinery utility plant with Model Predictive Control for constraint handling
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Robust Closed-Loop Real-Time Optimization for refinery utility plant with Model Predictive Control for constraint handling

机译:带有模型预测控制的炼油厂电厂鲁棒闭环实时优化,用于约束处理

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This paper presents the results from a very successful Energy Closed-Loop Real Time Optimization (E-CL-RTO) application implemented at the Idemitsu Aichi Refinery in Japan. The goal of the application is to optimize the steam, fuel, and electrical needs of a refinery site at minimum cost, taking into consideration process, environmental, and operational constraints as well as daily variations in utilities costs. The paper presents keys to the success of the project, including the handling of the disturbance inputs such as utility load changes, which occur very rapidly, and a design concept that a Model Predictive Control (MPC) would function similarly to a the skilled operator's operation of constraint handling. To accomplish this, we analyzed an operator's optimal actions and then developed the controller model so that the controller outputs would simulate the operator actions. The E-CL-RTO has reliably provided optimal targets to the equipment automatically and continuously, without any need for operator intervention, resulting in increased standardization. Finally, the paper outlines the key benefits derived from the implementation of the E-CL-RTO.
机译:本文介绍了在日本出光爱知炼油厂实施的非常成功的能量闭环实时优化(E-CL-RTO)应用的结果。该应用程序的目标是以最小的成本优化炼油厂场地的蒸汽,燃料和电力需求,同时考虑到过程,环境和操作限制以及公用事业成本的日常变化。本文介绍了该项目成功的关键,包括对扰动输入(例如公用事业负荷变化)的处理非常迅速,以及设计预测模型预测控制(MPC)的功能类似于熟练操作员的操作约束处理。为此,我们分析了操作员的最佳动作,然后开发了控制器模型,以便控制器输出可以模拟操作员的动作。 E-CL-RTO可靠,自动,连续地为设备提供了最佳目标,无需操作员干预,从而提高了标准化程度。最后,本文概述了实施E-CL-RTO的主要好处。

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