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ADVANCED CONTROLS FOR MULTI-STAGE FLASH (MSF) DESALINATION PLANT OPTIMIZATION

机译:多级闪光(MSF)脱盐工厂优化的先进控制

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An in-depth study of an MSF desalination plant control system has been conducted. The degrees of freedom analysis based on a dynamic mathematical model was used to determine the number of controlled (PVs) and manipulated variables (MVs). The analysis of the control problem points to a fully interacting multivariable system. Furthermore, prudent plant practices dictate strict bounds on several of these PVs and MVs and the desire to achieve unit optimization is felt. Thus, the MSF plant is an ideal candidate for constrained model predictive control (CMPC). A locally developed CMPC was designed to achieve a variety of operational objectives such as maximizing distillate production or performance ratio, minimizing energy consumption, etc. CMPC provides set points to the existing PID controllers and, thus, integrity with the existing instrumentation is maintained. The performance of CMPC was tested utilizing the SPEEDUP dynamic simulation software and the results are excellent. For example, it is shown that for an illustrative plant, steam savings of
机译:已经对MSF海水淡化厂控制系统进行了深入研究。使用基于动态数学模型的自由度分析来确定控制(PVs)和操纵变量(MVs)的数量。控制问题的分析指出了一个完全相互作用的多变量系统。此外,审慎的工厂实践规定了其中一些PV和MV的严格界限,人们感到有实现单元优化的愿望。因此,MSF工厂是约束模型预测控制(CMPC)的理想候选者。本地开发的CMPC旨在实现各种操作目标,例如最大化馏出油产量或性能比,最小化能耗等。CMPC为现有PID控制器提供设定点,因此可以保持与现有仪器的完整性。使用SPEEDUP动态仿真软件对CMPC的性能进行了测试,结果非常出色。例如,对于一个说明性工厂,表明节省了

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