Abstract

The paper deals with experimental identification of transformer internal faults, an important factor in reliability and sustainability of power supply systems. Task of identification of transformer internal faults requires increasing sensitivity of relay protection by calculation of components most sensitive to interwire faults from transformer current. In order to study internal faults in transformer, the model in Simulink MATLAB was developed on the basis of transformer constitutive equations. Transformer with short circuited wires was simulated as a multiwinding transformer. We provide the calculation of transformer parameters. Model was applied for analysis of transients in power transformers, such as interwire fault, transformer inrush, and fault in transformer connections. Analysis of power transformer internal faults by means of time-dependent symmetrical components of currents is provided. These symmetrical components were calculated for the first harmonic of current by means of discrimination of firs harmonic by low-pass filter and compensating elements implementing phase shift. Described method allows calculation of symmetrical components during transient and under non-sinusoidal conditions. Simulation results showed the advantage of instantaneous symmetrical components of other direct values. Those components were implemented in relay protection algorithms for identification of internal faults in transformers.

Highlights

  • Power transformers are important part of any electric power system, and significantly affect the sustainability and reliability of power supply

  • The transformer reliability is dependent on effective relay protection operation

  • As a result of growing energy capacity of modern industry [3], [4], [5], [6], the failure of relay protection in case of interwire fault will lead significant damage caused to the transformer by fault currents and results high repair costs

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Summary

Introduction

Power transformers are important part of any electric power system, and significantly affect the sustainability and reliability of power supply. The transformer reliability is dependent on effective relay protection operation. As a result of growing energy capacity of modern industry [3], [4], [5], [6], the failure of relay protection in case of interwire fault will lead significant damage caused to the transformer by fault currents and results high repair costs. The major methods for increasing sensitivity of relay protection are calculation of components most sensitive to interwire faults from transformer currents. Examples of such components are symmetrical components, dq0 transform, wavelet transform and other [7], [8], [9], [10], [11], [12]. In order to estimate and improve algorithms of relay protection, simulation of transformer transients is required

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