Title :
Prediction of transformer winding displacement from frequency response characteristics
Author :
Sathya, M. Arul ; Thomas, Ajith John ; Usa, S.
Author_Institution :
Div. of High Voltage Eng., Anna Univ., Chennai, India
Abstract :
The failures caused by short circuits are one of the causes of transformer outages. The short circuit currents induce excessive forces in the transformer windings which result in winding deformations affecting the mechanical and electrical characteristics of the winding. In the present work, a 722VA transformer winding is considered for the short circuit force and displacement analyses. The winding is subjected to short circuit current and the respective displacement of the winding is simulated and compared with the measurement. By using Finite element analysis, change in equivalent circuit parameters due to displacement is calculated and corresponding change in sweep frequency response is measured using SFRA. An attempt has been made to predict the displacement profile from change in resonant frequency in case of displaced conditions.
Keywords :
equivalent circuits; finite element analysis; frequency response; transformer windings; SFRA; apparent power 722 VA; displacement analyses; displacement profile; electrical characteristics; equivalent circuit parameters; finite element analysis; frequency response characteristics; mechanical characteristics; resonant frequency; short circuit currents; short circuit force; sweep frequency response; transformer outages; transformer winding displacement; winding deformations; Capacitance; Force; Inductance; Power transformers; Resonant frequency; Short-circuit currents; Windings; finite element method; short circuit forces; transformer; transient structural analysis; winding displacement;
Conference_Titel :
Condition Assessment Techniques in Electrical Systems (CATCON), 2013 IEEE 1st International Conference on
Conference_Location :
Kolkata
Print_ISBN :
978-1-4799-0081-7
DOI :
10.1109/CATCON.2013.6737517