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Closed-Loop Identification of Multivariable Systems by Optimization Method
- Source :
- Industrial & Engineering Chemistry Research. 51:1324-1336
- Publication Year :
- 2012
- Publisher :
- American Chemical Society (ACS), 2012.
-
Abstract
- An optimization method is presented for the closed-loop identification of first-order-plus-time-delay (FOPTD) transfer function models of multivariable systems using step responses. A standard least-squares optimization method is used to obtain the parameters of the FOPTD models by matching the closed-loop step responses of the model with those of the actual process. A simple method is proposed to obtain the initial guess values for the transfer function model parameters from the process main and interaction responses. The effects of measurement noise and controller settings on the identified model parameters were also studied. This method was applied to stable FOPTD and higher-order transfer function models of multivariable systems. The proposed method considerably reduces the computational time (by about a factor of 15) for the optimization when compared with the genetic algorithm method reported by Viswanathan et al. (Ind. Eng. Chem. Res. 2001, 40, 2818-2826). � 2011 American Chemical Society.
- Subjects :
- Computational time
Optimization
Matching (graph theory)
General Chemical Engineering
Least-squares optimization
SIMPLE method
Least squares approximations
Transfer function
Measurement Noise
Industrial and Manufacturing Engineering
FOPTD model
Transfer functions
Control theory
Genetic algorithm
Controller setting
Optimization method
Closed-loop
Higher order
Mathematics
Closed loop identification
Multivariable calculus
Multivariable systems
Model parameters
Process (computing)
Identification (control systems)
General Chemistry
Transfer function model
Identification (information)
Noise
Initial guess
Subjects
Details
- ISSN :
- 15205045 and 08885885
- Volume :
- 51
- Database :
- OpenAIRE
- Journal :
- Industrial & Engineering Chemistry Research
- Accession number :
- edsair.doi.dedup.....3907eea836cc73df2cfe3e5f0f522ec6
- Full Text :
- https://doi.org/10.1021/ie2013778