Diagnostics of Winding Deformation in a Single-Phase Power Transformer with an Unloaded Tertiary Winding in Operational Mode

Author:

Dorozhko Sergey1,Krivunev Andrey1

Affiliation:

1. Stavropol State Agrarian University , Russia

Abstract

Abstract The presented paper is focused on the development of an algorithm and software implementation of this algorithm into diagnostics of winding deformation in a single-phase power transformer with an unloaded tertiary winding in operational mode. To implement the algorithm, it is necessary to measure instantaneous values of input voltage and current, output voltage and current, and voltage across the unloaded tertiary winding by means of the electric power quality analyzer PQA – 824. This tool is utilized for signal filtering. The inductances of T-shaped equivalent circuit of the transformer were calculated. Relative deviations of the obtained inductance values were determined on the basis of transformer in operation; these deviations were compared with pre-determined set-points. If the inductances deviate from the set-points, the transformer must be repaired. Modern mathematical software package Mathcad 14 is designed to implement the algorithm. As a result of laboratory tests, the error of the proposed algorithm does not exceed 2% in comparison with the exact method.

Publisher

Walter de Gruyter GmbH

Subject

Mechanical Engineering,Waste Management and Disposal,Agronomy and Crop Science

Reference17 articles.

1. BENGTSSON, T. – ABEYWICKRAMA, N. 2012. On-line Monitoring of Power Transformer by Fundamental Frequency Signals. SIGRE. A2-110.

2. CAN, C. – LIN, X. – LI, X. 2016. Research on online monitoring of transformer winding deformation state based on short circuit reactance. In China International Conference on Electricity Distribution 2016. Xian, China, pp. 2010–2013. ISBN 9781467390712.

3. CHEN, W. – SUN, C. – YUN, Y. 2002. Study on the recognition of transformer winding deformation by using wavelet transform in the LVI method. In International Conference on Power System 2002. Kunming, China, vols. 1–4, pp. 1966–1969. ISBN 0780374592.

4. DAVIDENKO, I. V. – KOMAROV, V. I. – TIKHONOV, A. A. 2008. Questions of reliability and diagnostics of power transformers of low voltage classes. In The Third Scientific and Practical Conference “Diagnostics of Electrical Installations“ of the Public Council of Specialists of Siberia and the East on the problems of diagnostics of power electrical equipment and analytical instruments for energy enterprises and experience of their application 2008. The City of Angarsk. (In Russian: Voprosy nadezhnosti i diagnostiki silovyh transformatorov nizkih klassov napryazheniya).

5. DOROZHKO, S. V. 2011. Detection of deformation of windings of power transformers using the electric power quality analyzer PQA – 824. In Electromechanics, no. 5, pp. 26–29. (In Russian: Vyyavlenie deformacii obmotok silovyh transformatorov s ispol‘zovaniem analizatora kachestva elektricheskoj energii AKE-824).

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