Lumped modelling of open-circuit turbogenerator operational parameters
Solid-rotor turbine-generators have commonly been derived from the fitting of curves to terminal characteristics obtained by measurement or from finite element simulations. The paper presents a new method to represent the open-circuit operational inductances of a large turbogenerator of 150 MVA. The...
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Published in | IEEE transactions on energy conversion Vol. 14; no. 3; pp. 347 - 353 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
IEEE
01.09.1999
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Abstract | Solid-rotor turbine-generators have commonly been derived from the fitting of curves to terminal characteristics obtained by measurement or from finite element simulations. The paper presents a new method to represent the open-circuit operational inductances of a large turbogenerator of 150 MVA. The method differs from current estimation techniques because the lumped model and its parameters are determined simultaneously. It is based on a finite-element electromagnetic linear analysis of the solid-rotor machine cross section in the frequency domain. Network theory is used to characterise the quadrature-axis model where the problems of model structure and parameter determination are treated. A q-axis equivalent circuit with one damper winding and frequency dependent parameters is found. In addition, an analysis of the machine d-axis is presented. It is based in an electromagnetic study of the "black box" two-port network, where the open-circuit operational inductances are represented by frequency dependent parameters. |
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AbstractList | Solid-rotor turbine-generators have commonly been derived from the fitting of curves to terminal characteristics obtained by measurement or from finite element simulations. The paper presents a new method to represent the open-circuit operational inductances of a large turbogenerator of 150 MVA. The method differs from current estimation techniques because the lumped model and its parameters are determined simultaneously. It is based on a finite-element electromagnetic linear analysis of the solid-rotor machine cross section in the frequency domain. Network theory is used to characterise the quadrature-axis model where the problems of model structure and parameter determination are treated. A q-axis equivalent circuit with one damper winding and frequency dependent parameters is found. In addition, an analysis of the machine d-axis is presented. It is based in an electromagnetic study of the "black box" two-port network, where the open-circuit operational inductances are represented by frequency dependent parameters. Solid-rotor turbine-generators have commonly been derived from the fitting of curves to terminal characteristics obtained by measurement or from finite element simulations. The paper presents a new method to represent the open-circuit operational inductances of a large turbogenerator of 150 MVA. The method differs from current estimation techniques because the lumped model and its parameters are determined simultaneously. It is based on a finite-element electromagnetic linear analysis of the solid-rotor machine cross section in the frequency domain. Network theory is used to characterise the quadrature-axis model where the problems of model structure and parameter determination are treated. A q-axis equivalent circuit with one damper winding and frequency dependent parameters is found. In addition, an analysis of the machine d-axis is presented. It is based in an electromagnetic study of the "black box" two-port network, where the open-circuit operational inductances are represented by frequency dependent parameters |
Author | Arjona L., M.A. MacDonald, D.C. |
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References | ref13 (ref8) 1984; 2 ref12 ref15 gec alsthom engineering research centre (ref6) 0 ref14 ref11 ref10 van valkenburg (ref1) 1974 ref2 (ref9) 0 ref4 ref3 ref5 arjona (ref7) 1996 |
References_xml | – ident: ref15 doi: 10.1109/60.326479 – volume: 2 year: 1984 ident: ref8 article-title: improvement in accuracy of prediction of electrical machines constants and generator models for subsynchronous resonance conditions publication-title: Application of Two-Dimensional Finite-Element Techniques for Synchronous Machine Modelling – ident: ref12 doi: 10.1109/60.790880 – year: 0 ident: ref6 publication-title: SLIM User guide 1994 contributor: fullname: gec alsthom engineering research centre – ident: ref10 doi: 10.1109/60.486574 – ident: ref2 doi: 10.1109/TPAS.1978.354478 – ident: ref11 doi: 10.1007/978-1-4899-2907-5 – ident: ref5 doi: 10.1063/1.328956 – ident: ref3 doi: 10.1109/60.63148 – ident: ref13 doi: 10.1109/60.222718 – ident: ref14 doi: 10.1109/60.326480 – year: 0 ident: ref9 article-title: ieee guide for synchronous generator modelling practices in stability studies publication-title: IEEE Standards Board – ident: ref4 doi: 10.1049/ip-gtd:19949778 – year: 1996 ident: ref7 publication-title: Steady state and frequency domain lumped model numerical characterisation of solid rotor synchronous generators contributor: fullname: arjona – year: 1974 ident: ref1 publication-title: Network Analysis contributor: fullname: van valkenburg |
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Snippet | Solid-rotor turbine-generators have commonly been derived from the fitting of curves to terminal characteristics obtained by measurement or from finite element... |
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StartPage | 347 |
SubjectTerms | Cross sections Curve fitting Damper windings Electromagnetic analysis Electromagnetic induction Electromagnetic measurements Equivalent circuits Finite element method Finite element methods Frequency dependence Frequency domain analysis Mathematical analysis Mathematical models Networks Solid modeling Terminals Turbogenerators |
Title | Lumped modelling of open-circuit turbogenerator operational parameters |
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