DocumentCode :
1688879
Title :
Different short-circuit impedance calculation method of controllable reactor of transformer type
Author :
Ming Xing Tian ; Dong Sheng Yuan ; Yan Gong ; Xiao An ; Jian Ning Yin
Author_Institution :
Sch. of Autom. & Electr. Eng., Lanzhou Jiaotong Univ., Lanzhou, China
fYear :
2013
Firstpage :
422
Lastpage :
425
Abstract :
The short-circuit impedance calculation of CRT is especially important to the establishment of equivalent circuit and analysis of operating characteristics. The paper reveals the intrinsic link between short-circuit impedance and equivalent circuit inductance by mathematical formula, and it elaborates three different methods to calculate short-circuit impedance, respectively the formula method, which calculates short-circuit impedance directly and easily; self and mutual impedance analytical method and ANSYS finite-element method, which calculate short-circuit impedance through the self and mutual inductance indirectly and have no geometric space restrictions to the windings. Then, an example is given to show that the results of these three methods are consistent, so these methods can be rationally chosen according to their own characteristics and the actual situation.
Keywords :
equivalent circuits; finite element analysis; inductance; transformers; ANSYS finite-element method; CRT; controllable reactor; equivalent circuit inductance; geometric space; mathematical formula; mutual impedance; self impedance; short-circuit impedance calculation method; transformer type; Equivalent circuits; Finite element analysis; Impedance; Inductance; Inductors; Magnetic cores; Windings; calculation method; controllable reactor of transformer type; equivalent circuit; short-circuit impedance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applied Superconductivity and Electromagnetic Devices (ASEMD), 2013 IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-0068-8
Type :
conf
DOI :
10.1109/ASEMD.2013.6780810
Filename :
6780810
Link To Document :
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