Using TACS Functions Within EMTP to Set Up Current-Transformer Model Based on the Jiles-Atherton Theory of Ferromagnetic Hysteresis

The subject of this paper is to construct a current- transformer (CT) model based on the Jiles-Atherton (J-A) theory of ferromagnetic hysteresis using transient analysis of control systems (TACS) functions within the electromagnetic transients program (EMTP) in a closed-loop manner. The J-A theory o...

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Published inIEEE transactions on power delivery Vol. 22; no. 4; pp. 2222 - 2227
Main Authors Liu, Shun-Tsai, Huang, Sy-Ruen, Chen, Hung-Wei
Format Journal Article
LanguageEnglish
Published New York, NY IEEE 01.10.2007
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Subjects
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ISSN0885-8977
1937-4208
DOI10.1109/TPWRD.2007.905809

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Abstract The subject of this paper is to construct a current- transformer (CT) model based on the Jiles-Atherton (J-A) theory of ferromagnetic hysteresis using transient analysis of control systems (TACS) functions within the electromagnetic transients program (EMTP) in a closed-loop manner. The J-A theory of ferromagnetic hysteresis is presented by the nonlinear first-order ordinary differential equations and inclusive of five parameters that can be found by measurements of hysteresis characteristic. We can use TACS functions within EMTP to describe the J-A theory of ferromagnetic hysteresis. The powerful advantage of this way is the interaction between the electrical network and TACS in EMTP. Compared with the CT model based on the type 96 nonlinear hysteresis inductor, the simulated result of the CT model based on the J-A theory of ferromagnetic hysteresis is almost the same in steady-state situations, but apparently different in a fault transient situation. The analysis and simulation of the actual measured fault profiles in the Taiwan power system is an example of the validation of this proposed model. Therefore, this proposed CT model based on the J-A theory of ferromagnetic hysteresis has the analysis capability of the transient response. The flexibility of TACS makes the simulation of any other situation easier and is another advantage.
AbstractList The subject of this paper is to construct a current- transformer (CT) model based on the Jiles-Atherton (J-A) theory of ferromagnetic hysteresis using transient analysis of control systems (TACS) functions within the electromagnetic transients [abstract truncated by publisher].
The subject of this paper is to construct a current- transformer (CT) model based on the Jiles-Atherton (J-A) theory of ferromagnetic hysteresis using transient analysis of control systems (TACS) functions within the electromagnetic transients program (EMTP) in a closed-loop manner. The J-A theory of ferromagnetic hysteresis is presented by the nonlinear first-order ordinary differential equations and inclusive of five parameters that can be found by measurements of hysteresis characteristic. We can use TACS functions within EMTP to describe the J-A theory of ferromagnetic hysteresis. The powerful advantage of this way is the interaction between the electrical network and TACS in EMTP. Compared with the CT model based on the type 96 nonlinear hysteresis inductor, the simulated result of the CT model based on the J-A theory of ferromagnetic hysteresis is almost the same in steady-state situations, but apparently different in a fault transient situation. The analysis and simulation of the actual measured fault profiles in the Taiwan power system is an example of the validation of this proposed model. Therefore, this proposed CT model based on the J-A theory of ferromagnetic hysteresis has the analysis capability of the transient response. The flexibility of TACS makes the simulation of any other situation easier and is another advantage.
The analysis and simulation of the actual measured fault profiles in the Taiwan power system is an example of the validation of this proposed model. [...] this proposed CT model based on the J-A theory of ferromagnetic hysteresis has the analysis capability of the transient response.
Author Shun-Tsai Liu
Hung-Wei Chen
Sy-Ruen Huang
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Cites_doi 10.1109/20.119813
10.1109/TAES.2002.1145768
10.1016/0304-8853(86)90066-1
10.1109/TMAG.2004.830998
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10.1109/20.800665
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Issue 4
Keywords Closed loop
Transient response
EMTP
Differential equation
Control system
Current transformer (CT)
Ferromagnetic materials
Inductor
Flexibility
Steady state
Hysteresis loop
Current transformer
transient analysis of control systems (TACS)
Electrical network
First order
System simulation
Ferromagnetism
Jiles-Atherton (J-A) hysteresis model
Transient analysis
Electromagnetic Transients Program (EMTP)
Comparative study
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References ref13
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jiles (ref1) 1986; 61
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  article-title: theory of ferromagnetic hysteresis
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Snippet The subject of this paper is to construct a current- transformer (CT) model based on the Jiles-Atherton (J-A) theory of ferromagnetic hysteresis using...
The analysis and simulation of the actual measured fault profiles in the Taiwan power system is an example of the validation of this proposed model. [...] this...
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StartPage 2222
SubjectTerms Applied sciences
Computer simulation
Control system synthesis
Current transformer (CT)
Current transformers
Differential equations
Electric power generation
Electrical engineering. Electrical power engineering
Electrical machines
Electrical power engineering
Electromagnetic modeling
Electromagnetic Transients Program (EMTP)
EMTP
Exact sciences and technology
Faults
Ferromagnetism
Flexibility
Hysteresis
Jiles-Atherton (J-A) hysteresis model
Mathematical models
Miscellaneous
Nonlinearity
Ordinary differential equations
Power networks and lines
Power system modeling
Power system simulation
Power system transients
Regulation and control
Studies
Transformers and inductors
Transient analysis
transient analysis of control systems (TACS)
Title Using TACS Functions Within EMTP to Set Up Current-Transformer Model Based on the Jiles-Atherton Theory of Ferromagnetic Hysteresis
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