Complete transformer model for electromagnetic transients
Полная модель трансформатора для электромагнитных переходных процессов
1994-01-01
SCID: 54.1/sdusu7jd
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Norton equivalenteddy current losseselectromagnetic transientsthree-phase transformer modelturns-based winding model
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Abstract (AI)
A complete, three phase transformer model for the calculation of electromagnetic transients is presented. The model consists of a set of state equations solved with the trapezoidal rule of integration in order to obtain an equivalent Norton circuit at the transformer terminals. Thus the transformer model can be easily interfaced with an electromagnetic transients program. Its main features are: (a) the basic elements for the winding model are the turns; (b) the complete model includes the losses due to eddy currents in the windings and in the iron core; and (c) the solution of the state equations is obtained in decoupled iterations. For validation, the frequency response of the model is compared with tests on several transformers. Applications to the calculation of transients are given for illustration.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
Key Findings
1
A complete three-phase transformer model for electromagnetic transients is formulated using state equations solved with the trapezoidal integration rule.
2
The complete model explicitly includes losses due to eddy currents in both windings and the iron core.
3
The model represents windings at the turns level as the basic elements for the winding model.
4
The state-equation solution is performed using decoupled iterations, enabling an equivalent Norton circuit at the transformer terminals.
5
The transformer model is validated by comparing its frequency response with tests on several transformers and is demonstrated in transient calculation applications.
Research Object
Complete three-phase transformer model for electromagnetic transients
Research Subject
Calculation and representation of electromagnetic transients including winding-turn-based modeling, eddy-current losses in windings and iron core, state-equation solution (trapezoidal integration and decoupled iterations) and derivation of an equivalent Norton circuit for interface with EMT programs
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1994-01-01
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