Title :
Duality-Based Transformer Model Including Eddy Current Effects in the Windings
Author :
Jazebi, Saeed ; de Leon, Francisco
Author_Institution :
Polytech. Sch. of Eng., Dept. of Electr. & Comput. Eng., NYU, New York, NY, USA
Abstract :
This paper presents a general method for building equivalent electric circuits of power transformers, including eddy current effects in windings and core. A high-frequency equivalent dual model for single- and three-phase transformers with two multilayer windings is derived from the application of the principle of duality. The model is built from elements available in circuit simulation programs, such as Electromagnetic Transients Program (EMTP)-Alternative Transients Program, EMTP-RV, PSCAD, and PSpice. The parameters of the frequency-dependent leakage inductance and winding resistance are computed with analytical formulae obtained from the solution of Maxwell´s equations that are based on the geometrical dimensions and material information. Ideal transformers are utilized to isolate the electric components (winding resistors and capacitors) from the magnetic components (inductors). The physically correct connection points for electric and magnetic components are clearly identified. The proposed methodology is successfully validated versus finite- element simulations and laboratory measurements.
Keywords :
EMTP; SPICE; cores; eddy currents; equivalent circuits; power transformers; transformer windings; EMTP; PSCAD; PSpice; duality based transformer model; electromagnetic transients program; equivalent electric circuits; frequency dependent leakage inductance; high frequency equivalent dual model; ideal transformer; multilayer windings; power transformers; single-phase transformer; three-phase transformer; transformer core; transformer winding; winding eddy current effect; winding resistance; Computational modeling; Eddy currents; Inductance; Inductors; Integrated circuit modeling; Magnetic fields; Windings; Eddy currents; electromagnetic transients; leakage inductance; principle of duality; transformer modeling;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2015.2424223