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Modeling and identification of experimental drum type steam boiler

机译:实验鼓式蒸汽锅炉的建模与识别

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Developing mathematical model for a process is an important and integral step in control system design process. Mathematical models can be developed from fundamental physical laws (white-box approach), by performing experiments (black-box approach) or a combination of both (gray-box approach). This paper presents a black-box system identification of a laboratory boiler. A mathematical MIMO model matrix which describes the dynamic behavior of the drum level and drum pressure of lab-boiler setup with respect to steam and feed water as manipulated variables is presented. A complete system identification of lab-boiler setup, designed by these researchers, has been carried out based on the design-of-experiments (DoE) and validated model with the field measurements. In this paper, the identified boiler-model is characterized in the form of 2×2 process transfer function model matrix structure. This 2×2 model matrix defines the dynamics describing the effect of changes in the feed-water flow rate and steam-flow rate, on the boiler drum-level and drum-pressure. This model can be used to study various classical and advanced control-design and analysis through this lab boiler setup.
机译:开发过程的数学模型是控制系统设计过程中的重要又一步。通过执行实验(黑盒方法)或两者(灰盒方法)的组合,可以从基本物理法(白盒方法)开发数学模型。本文介绍了实验室锅炉的黑匣子系统识别。提出了一种数学MIMO模型矩阵,其描述了在蒸汽和进料水相对于操纵变量的蒸汽和进料水的滚筒水平和鼓压的动态行为。由这些研究人员设计的实验室型锅炉设置的完整系统识别已经基于实验设计(DOE)和验证模型进行了现场测量。本文中,所识别的锅炉模型的特征在于2×2工艺传递函数模型矩阵结构的形式。这2×2型号矩阵定义了描述锅炉鼓级和鼓压的进料流量速率和蒸汽流量变化效果的动态。该模型可用于通过该实验室锅炉设置研究各种经典和高级控制设计和分析。

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