Partially-coupled nonlinear parameter optimization algorithm for a class of multivariate hybrid models

•The original identification model is decomposed into several sub models according to the dimension of output and different forms of parameters.•To solve the unmeasurable noise terms in the information matrices, we construct some auxiliary models based on the obtained parameter estimates.•To cut dow...

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Veröffentlicht in:Applied mathematics and computation Jg. 414; S. 126663
Hauptverfasser: Zhou, Yihong, Zhang, Xiao, Ding, Feng
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Elsevier Inc 01.02.2022
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ISSN:0096-3003
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Abstract •The original identification model is decomposed into several sub models according to the dimension of output and different forms of parameters.•To solve the unmeasurable noise terms in the information matrices, we construct some auxiliary models based on the obtained parameter estimates.•To cut down the redundant estimates and solve the associate terms , a partially coupled nonlinear parameter optimization algorithm is proposed. A key to the analysis and design of a dynamic system is to establish a suitable mathematical model of the system. This paper investigates the parameter optimization problem of a class of radial basis function-based multivariate hybrid models. Taking into account the high dimensions of the models and different forms of the parameters, the original identification model is separated into several regressive sub-identification models according to the characteristics of model outputs. Some auxiliary models are constructed to solve the unmeasurable noise terms in the information matrices. For the purpose of eliminating the redundant computation and to deal with the associate terms caused by the model decomposition, inspired by the coupling concept, a partially-coupled nonlinear parameter optimization algorithm is proposed for the multivariate hybrid models. Through the computational efficiency analysis and numerical simulation verification, it is shown that the proposed algorithm has low computational complexity and high parameter estimation accuracy.
AbstractList •The original identification model is decomposed into several sub models according to the dimension of output and different forms of parameters.•To solve the unmeasurable noise terms in the information matrices, we construct some auxiliary models based on the obtained parameter estimates.•To cut down the redundant estimates and solve the associate terms , a partially coupled nonlinear parameter optimization algorithm is proposed. A key to the analysis and design of a dynamic system is to establish a suitable mathematical model of the system. This paper investigates the parameter optimization problem of a class of radial basis function-based multivariate hybrid models. Taking into account the high dimensions of the models and different forms of the parameters, the original identification model is separated into several regressive sub-identification models according to the characteristics of model outputs. Some auxiliary models are constructed to solve the unmeasurable noise terms in the information matrices. For the purpose of eliminating the redundant computation and to deal with the associate terms caused by the model decomposition, inspired by the coupling concept, a partially-coupled nonlinear parameter optimization algorithm is proposed for the multivariate hybrid models. Through the computational efficiency analysis and numerical simulation verification, it is shown that the proposed algorithm has low computational complexity and high parameter estimation accuracy.
ArticleNumber 126663
Author Zhang, Xiao
Zhou, Yihong
Ding, Feng
Author_xml – sequence: 1
  givenname: Yihong
  surname: Zhou
  fullname: Zhou, Yihong
  email: yhzhou1121@126.com
– sequence: 2
  givenname: Xiao
  surname: Zhang
  fullname: Zhang, Xiao
  email: xzhang13@126.com, xzhang@jiangnan.edu.cn
– sequence: 3
  givenname: Feng
  surname: Ding
  fullname: Ding, Feng
  email: fding@jiangnan.edu.cn
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Sat Nov 29 07:23:01 EST 2025
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Keywords Radial basis function
Gradient search
Hybrid model
Coupling identification
Nonlinear optimization
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Snippet •The original identification model is decomposed into several sub models according to the dimension of output and different forms of parameters.•To solve the...
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StartPage 126663
SubjectTerms Coupling identification
Gradient search
Hybrid model
Nonlinear optimization
Radial basis function
Title Partially-coupled nonlinear parameter optimization algorithm for a class of multivariate hybrid models
URI https://dx.doi.org/10.1016/j.amc.2021.126663
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