Title :
Design of Transformer With High-Permeability Ferromagnetic Core and Strengthened Windings for Short-Circuit Condition
Author :
Min-Fu Hsieh ; Chang-Hung Hsu ; Chao-Ming Fu ; Yi-Mei Huang
Author_Institution :
Dept. of Syst. & Naval Mechatron. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
Abstract :
This paper provides the design of 1 MVA three-phase oil-immersed distribution transformers considering short-circuit testing (SCT) and its impact on the windings. To maintain the transformer function after the SCT, only an impedance variation within 5% is allowed. Therefore, in conjunction with the particle swarm optimization (PSO), a simulation-based optimal approach is developed for the design of the distribution transformers. Finite-element analysis is used to work with the PSO for the calculation of flux densities, costs, core losses, and magnetostriction variations for the transformers under a prescribed noise level. Three transformer prototypes are then built using two types of amorphous cores and a conventional silicon steel core, respectively. The performance after the SCT is evaluated for the prototypes constructed. From the test results, it is found that the amorphous core is suitable for transformers in terms of lower noise level, core loss, and magnetostriction variation.
Keywords :
finite element analysis; magnetic flux; magnetic permeability; particle swarm optimisation; power transformer insulation; power transformer testing; prototypes; short-circuit currents; transformer cores; transformer oil; transformer windings; PSO; SCT performance; amorphous core; conventional silicon steel core; core loss; costs; finite element analysis; flux density; high-permeability ferromagnetic core; lower noise level; magnetostriction variation; particle swarm optimization; short-circuit condition; short-circuit testing; simulation-based optimal approach; strengthened winding; three-phase oil-immersed distribution transformer design; transformer prototype; Core loss; Power transformers; Silicon; Steel; Transformer cores; Windings; Amorphous transformer; core loss; finite-element analysis (FEA); noise level; particle swarm optimization (PSO);
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2015.2457956