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Control of centrifugal compressors via model predictive control for enhanced oil recovery applications

机译:通过模型预测控制来控制离心压缩机,以提高采收率

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摘要

© 2015, IFAG (International Federation of Automatic Control) Hosting by Elsevier Ltd. All rights reserved.This paper proposes a control system for integrated pressure and surge control of centrifugal compressors for enhanced oil recovery application. The proposed control system is based on linear model predictive control. A fully validated non-linear dynamic model was developed in order to simulate the operation of the compressor at full and partial load. The model of the compression system includes a main process line with the compressor and a recycle line with the antisurge recycle valve. Different disturbance and control tuning scenarios were tested and the response of the model predictive controller was analysed, evaluated and also compared with a traditional control system. Temperature effects have been taken into account in the model of the process and in the constraint formulation of the MPC optimization problem. The results show that the proposed control technique is able to meet the process demand while preventing surge and also minimizing the amount of gas recycle.
机译:©2015,IFS(国际自动控制联合会),由Elsevier Ltd.托管。保留所有权利。本文提出了一种用于离心压缩机的集成压力和喘振控制的控制系统,以提高采油率。所提出的控制系统基于线性模型预测控制。为了模拟压缩机在满负荷和部分负荷下的运行,开发了经过充分验证的非线性动力学模型。压缩系统的模型包括带有压缩机的主生产线和带有防喘振再循环阀的再循环线。测试了不同的干扰和控制调整方案,并对模型预测控制器的响应进行了分析,评估,并与传统控制系统进行了比较。在过程模型和MPC优化问题的约束公式中已考虑到温度影响。结果表明,所提出的控制技术能够在防止喘振的同时满足工艺要求,并最大程度地减少气体再循环量。

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    Budinis S; Thornhill NF;

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  • 年度 2015
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