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A Reduced-order Model for Real-time NMPC of Ethanol Steam Reformers ?

机译:乙醇蒸汽重整器的实时NMPC的阶数模型

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摘要

One of the approaches to green energy of interest in recent years is through the use of hydrogen technologies in which the waste product of combustion is water rather than carbon dioxide, nitrous oxides, and other pollutants generated by the burning of hydrocarbon fuels. Ethanol steam reformers is one of the primary technologies with the potential to generate hydrogen efficiently and reliably. This article investigates the design of nonlinear optimal feedback control systems for ethanol steam reformers based on mechanistic models described by a system of nonlinear partial differential-algebraic equations, aka singular/descriptor systems. The mechanistic models are too complicated to simulate in real-time using the standard numerical discretization methods, much less to directly incorporate such models as nonlinear constraints into mechanistic model-based nonlinear model predictive control formulations. This article employs a rather sophisticated multivariate form of the method of characteristics to reformulate the nonlinear constraints into a much simpler form amenable to real-time control implementations.
机译:近年来兴趣的绿色能量的方法之一是使用燃烧废品的氢技术是水而不是二氧化碳,氧化氮和由碳气燃料燃烧产生的其他污染物。乙醇蒸汽重整器是主要技术的主要技术之一,潜力有效可靠地产生氢。本文研究了基于由非线性局部差分 - 代数,AKA奇异/描述符系统的系统描述的机械模型的基于机械模型的乙醇蒸汽重整器的非线性最佳反馈控制系统的设计。机械模型过于复杂,无法使用标准数值离散化方法实时模拟,以直接将这些模型作为非线性约束直接纳入基于机械模型的非线性模型预测控制配方。本文采用相当复杂的多变量形式的特性方法,以将非线性约束重构为更简单的形式,适用于实时控制实现。

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