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Development of a Hybridized Model for Predicting the Life Span of Power Transformers
Power transformers are important equipment of the electrical switchyard whose failure leads to long hours of outage. In this research, a two-stage hybridized model for determining the lifespan of power transformers is presented by using the furan content to determine the Degree of Polymerisation (DP...
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Published in: | Journal of applied science & environmental management 2019-11, Vol.23 (7), p.1257 |
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Main Authors: | , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Online Access: | Get full text |
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Summary: | Power transformers are important equipment of the electrical switchyard
whose failure leads to long hours of outage. In this research, a
two-stage hybridized model for determining the lifespan of power
transformers is presented by using the furan content to determine the
Degree of Polymerisation (DP) of transformer. For a
'virgin' transformer, the furan content was about 0.01ppm
while a transformer with about 10ppm was within its end of useful life.
2-Furaldehyde (2FAL) content values of 0.01ppm and 10ppm correspond to
DP values of approximately 1200 and 250, respectively. These parameters
were used in developing a DP model using Jacobi and Gauss Seidel
numerical analysis iterative techniques. The techniques were
implemented in Matrix Laboratory 8.2 (R2013b) environment. The second
stage involved the hybridisation of the developed DP model with another
rate constant model adopted from Arrhenius. This stage was also
implemented in Matrix Laboratory 8.2 (R2013b) environment. The life
span of the transformer was determined by adding the service age at any
point in time to the remaining lifetime at that point. A GUI of the
hybridised model was developed using SIMULINK blocks. The developed
model yielded a DP range of 247 ≤ DP ≤ 1184. Factors such
as the hotspot temperature, activation energy and pre-exponential
factor were useful for the determination of lifespan. |
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ISSN: | 1119-8362 |
DOI: | 10.4314/jasem.v23i7.11 |