Title :
A measurement technique for quality control of windings for cast resin power transformers
Author :
Fiorucci, E. ; Bucci, G. ; D´Innocenzo, F. ; Luiso, Mario
Author_Institution :
Dip. di Ing. Ind. e dell´Inf. e di Econ., Univ. degli Studi dell´Aquila, L´Aquila, Italy
Abstract :
The cast resin transformers are today used in a vast range of applications, as reliable answer for application concerning distribution systems, energy co-generation, rectification, traction and other special requirements. To increase the quality of the resin casting process, a research cooperation between the Department of Electrical and Information Engineering and Economics of the University of L´Aquila and the Bticino Legrand group has been started, with the main aim of developing a non- invasive and reliable measurement procedure, for a fast characterization and the identification of possible nonconformity for cast resin windings. The proposed procedure is based on the SFRA (Sweep Frequency Response Analysis), with some improvements for the correct evaluation of the correlation coefficients among different SFRA profiles. In this paper, the experimental results that have been obtained by applying the SFRA to windings of different sizes are presented, and some faults have been investigated.
Keywords :
conformance testing; electric impedance measurement; fault diagnosis; quality control; resins; transformer windings; cast resin power transformer winding; cast resin winding nonconformity; fault detection; measurement technique; noninvasive measurement procedure; quality control; reliable measurement procedure; resin casting process; sweep frequency response analysis; Circuit faults; Frequency measurement; Oil insulation; Power transformer insulation; Resins; Windings; MV power transformers; fault detection; frequency response; measurement system; quality control;
Conference_Titel :
Instrumentation and Measurement Technology Conference (I2MTC) Proceedings, 2014 IEEE International
Conference_Location :
Montevideo
DOI :
10.1109/I2MTC.2014.6860830