Modeling and analysis by Viscous Fluid Heating Process Identification in a Plate Heat Exchanger

C. Bucheli, A. Luis, B. Reyes, Aristides
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Abstract

This paper is about off line continuous time systems identification. In particular, it deals with the identification of the temperature and pressure processes dynamics of viscous fluids in an industrial plate heat exchanger (PHE) by estimating the parameters of the Multiple Input Multiple Output (MIMO) model. The lineal model is obtained around the linear dependence breaking point between the temperature and pressure variables of the glycerin and the viscosity of the working fluid. As a result of the identification, a multivariate model with two inputs and two outputs is provided which presents a fit of [87.79; 99.66] % (prediction focus), and FPE: 1.72e-07, MSE: 0.003592 with poles and zeros in the complex LHP plane suitable for control, what will allow to extend the investigation to the processes control with dynamics difficult to control. Keywords- MIMO systems identification, plate heat exchanger, transfer function matrix, poles and zeros, Gershgorin band
板式换热器粘性流体加热过程辨识的建模与分析
本文研究的是离线连续时间系统的辨识问题。特别是,通过估计多输入多输出(MIMO)模型的参数,处理了工业板式换热器(PHE)中粘性流体的温度和压力过程动力学的识别。在甘油的温度和压力变量与工质粘度之间的线性依赖断点附近建立了线性模型。作为识别的结果,提供了一个具有两个输入和两个输出的多变量模型,其拟合为[87.79;99.66] %(预测焦点),FPE: 1.72e-07, MSE: 0.003592,极点和零点在复杂的LHP平面上适合控制,这将允许将研究扩展到动力学难以控制的过程控制。关键词:MIMO系统辨识,板式换热器,传递函数矩阵,极点和零点,格什戈林带
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