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The Field-circuit Coupled Solution on DC Magnetic Biasing of Transformer
Author: ZhouSheng
Tutor: WangZeZhong
School: North China Electric Power University (Beijing)
Course: Theory and New
Keywords: transformer DC magnetic biasing finite element Runge-Kutta method
CLC: TM401
Type: Master's thesis
Year: 2008
Downloads: 291
Quote: 2
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Abstract
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It is studied that the power transformers’DC magnetic biasing in this dissertation. The DC bias magnetization of transformers in the power system is a complex problem, it involves power system simplifying, the three dimensional nonlinear electromagnetic fields numerical calculating.The main part of the dissertation is: when calculting the three dimensional electromagnetic fields of nonuniform media, it is proved that the result of the edge elements is more accurate than nodal elements’by solving a simple model, so we use the circuit-filed coupled solution based on solving the differential inductance of the transformer’s model, by means of Runge-Kutta method compiled by Fortran program, doing a circular calculation of three dimensional nonlinear electromagnetic fields, the curve of the transformer’s excitation current is solved, and a simulation of direct current magnetic bias on transformer is done; in the end,it is disscused that the relation of the length of the Runge-Kutta’s step and the calculative result, simulation results provide a feasible way for analyzing the problem of transformers’family equipments in the power system.
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CLC: > Industrial Technology > Electrotechnical > Transformers, converters and reactors > General issues > The basic principles of
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