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首页> 外文期刊>Latin America Transactions, IEEE (Revista IEEE America Latina) >Model-Based Predictive Control Using Differential Evolution Applied to a Pressure System
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Model-Based Predictive Control Using Differential Evolution Applied to a Pressure System

机译:基于微分演化的基于模型的预测控制应用于压力系统

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摘要

Model-Based Predictive Control techniques have been applied industrially since the 1970s, presenting favorable characteristics. Among them, it can be mentioned the treatment of process constraints and optimization considering the output error with respect to the reference and the used energy. Usually, formulations based on linear models of the plant are used. However, the use of linear models for nonlinear plants can result in control loops with limited or even reduced performance. In this paper, the use of a Model-Based Predictive Control approach using a Differential Evolution algorithm for optimization applied in a pressure control system is presented. The results show the advantages found by using such nonlinear formulation. The methodology used, with comments about the obtained results and conclusions on this line of research are presented.
机译:自1970年代以来,基于模型的预测控制技术已在工业上得到应用,具有良好的特性。其中,可以提到考虑到参考值和所用能量的输出误差的过程约束和优化处理。通常,使用基于植物线性模型的配方。但是,将线性模型用于非线性设备可能会导致控制回路的性能受到限制甚至降低。在本文中,提出了使用基于差分预测算法的基于模型的预测控制方法进行压力控制系统优化的方法。结果显示了使用这种非线性公式所发现的优点。介绍了所使用的方法,并对获得的结果和该研究的结论进行了评论。

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