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Journal ArticleDOI

Frequency domain correlation technique for PD location in transformer winding

V. Jeyabalan, +1 more
- 28 Aug 2009 - 
- Vol. 16, Iss: 4, pp 1160-1167
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TLDR
In this article, the limitation of time domain correlation method in locating partial discharge (PD) in transformer windings is found out, and frequency domain correlation with Gram Schmidt orthogonalization is proposed.
Abstract
Partial discharge (PD) is one of the sources of insulation failures in Power transformers. Knowledge of the PD source locations are important for transformer maintenance and repair. Due to the complex structure of the transformer, it is very difficult to locate the PD accurately in transformer winding. Correlation methods are applied to locate the PD source across the winding. The PD across parts of the winding are simulated by applying voltage pulse across the sections. The winding response for a reference PD impulse across transformer sections are taken as base for correlation and correlated with winding response of PD impulse across any section with different PD pulse widths. In this paper the limitation of time domain correlation method in locating PD in transformer windings is found out. To overcome the limitation of time domain correlation method, frequency domain correlation with Gram Schmidt orthogonalization is proposed. Simulation and experiments are performed on layer, continuous disc and interleaved windings to prove the feasibility of the proposed method.

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Citations
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Journal ArticleDOI

A New Transformer FRA Measurement Technique to Reach Smart Interpretation for Inter-Disk Faults

TL;DR: It is revealed that the proposed intelligent technique is capable of interpreting, detecting, and classifying the transformer winding inter-disk fault and its severity and is able to support the online FRA data assessment.
Journal ArticleDOI

Partial Discharge Localization in a Power Transformer: Methods, Trends, and Future Research

TL;DR: The techniques of PD localization used so far are compared, and their advantages and limitations are pointed out, to help develop the future technologies for PD localization thereby avoiding insulation damage.
Journal ArticleDOI

Localization of Partial Discharges Inside a Transformer Winding Using a Ladder Network Constructed From Terminal Measurements

TL;DR: In this paper, the authors employed terminal measurements to construct a physically realizable ladder network, where simulated responses obtained from the ladder network for signals of known pulse-widths at all locations were used as reference data.
Journal ArticleDOI

Wavelet power ratio signature spectrum analysis for prediction of winding insulation defects in transformer and shunt reactor

TL;DR: In this paper, a wavelet power ratio signature spectrum analysis is proposed to identify the short duration of partial discharge (PD) pulses of 170 ns and 30 ns within windings due to impulse voltage excitation.
Journal ArticleDOI

Partial discharge location in power transformer windings using the wavelet Laplace function

TL;DR: In this article, a new method for PD location in transformer windings based on Wavelet Laplace (WL) is developed in which the PD reference signals are obtained from a lumped parameter model (RLC) and those signals are used to determine the WL parameters.
References
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Book

Digital Communications

Digital communications

J.E. Mazo
TL;DR: This month's guest columnist, Steve Bible, N7HPR, is completing a master’s degree in computer science at the Naval Postgraduate School in Monterey, California, and his research area closely follows his interest in amateur radio.
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High-voltage engineering: Fundamentals

TL;DR: In this paper, the authors describe the generation of high voltages, measurement of high voltage measurements and field stress control, electrical breakdown in gases, and non-destructive insulation test techniques.
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Statistical techniques for high-voltage engineering

TL;DR: This book sets out statistical methods that can be used in the preparation, execution, evaluation and interpretation of experiments of a random nature, and contains detailed sections on breakdown statistics of typical electrical insulating arrangements.
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Large Power Transformers

TL;DR: In this paper, the physical background of Transformer operation is discussed, including the core, the windings, and the insulation of the Transformer's structural parts, as well as the temperature rise and cooling of Transformers.
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