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3D Finite Element Estimation of Stray Losses in Three-Phase Transformers

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Stray losses and flux leakages of a three-phase three-limb transformer are determined and analyzed using 3D finite element analysis. The problem is not current driven but voltage fed. Thus, a circuit-field problem is established and solved. The operating condition analyzed is the load-loss test. Since low excitation voltages are excited during this test, the transformer works under unsaturated conditions. As a result, the transformer is modelled using a time-harmonic approach. The transformer geometry is truly three dimensional, forbidding the use of conventional 2D models. The clamp plates and transformer tank are conveniently modelled with surface impedance boundary conditions.
Rocznik
Strony
89--100
Opis fizyczny
Bibliogr. 9 poz.
Twórcy
Bibliografia
  • [1] Olivares J.C., Escarela-Perez R., Kulkarni S.V., de León F., Venegas-Vega M.A.: 2D finite-element determination of tank wall losses in pad-mounted transformers, Journal of Electric Power Systems Research (Elsevier), 71 (2004) 179-185.
  • [2] Olivares J.C., Cañedo J., Moreno P., Driesen J., Escarela-Perez R.: Experimental Study to Reduce the Distribution-Transformers Stray Losses Using Electromagnetic Shields, Journal of Electric Power Systems Research (Elsevier), 63 (2002) 1-7.
  • [3] Guérin C., Tanneau G., Meunier G.: 3D Eddy Current Losses Calculation in Transformer Tanks Using the Finite Element Method, IEEE Trans. Magn., Vol. 29, (1993) 1419-1422.
  • [4] Holland S., O’Connell G., Haydock L.: Surface Impedance for 3D Non-linear Eddy Current Problems Application to Loss in Transformer, IEEE Trans. Magn., Vol. 32, (1996) 808-811.
  • [5] Rodger D., Eastham J.F.: A formulation for low frequency eddy current solutions, IEEE Trans. Magn., Vol. MAG 19, (1983) 2443-2446.
  • [6] Rodger D., Leonard P.J., Lai H.C., Coles P.C.: Finite element modeling of thin skin depth problems using magnetic vector potential, IEEE Transactions on Magnetic, Vol. 33, (1997) 1299-1301.
  • [7] Binns K.J., Lawrenson P.J., Trowbridge C.W.: The Analitycal and Numerical Solution of Electric and Magnetic Fields, John Wiley and Sons, 1992.
  • [8] MEGA V6.27: USER’S MANUAL, Applied Electromagnetic Research Centre, Bath University, UK, 2000.
  • [9] Carter G.W.: Electromagnetic Field and its Engineering Aspects, Second Edition. Longman, London, 1967.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD5-0012-0007
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