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Modeliranje tokovnega merilnega transformatorja
ID
HANDŽAR, ADI
(
Author
),
ID
Agrež, Dušan
(
Mentor
)
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Abstract
Magistrsko delo opisuje modeliranje vpliva vhodnega toka in zunanje temperature na točnost merjenja tokovnega merilnega transformatorja, ki ga v samem števcu električne energije uporabljamo kot senzor za merjenje električnega toka. Pridobljeni regresijski model je bil uporabljen pri programiranju kompenzacije v vdelani programski opremi. V prvem koraku smo preučili vrste tokovnih senzorjev in opisali tokovni transformator. V drugem koraku je opisan postopek kalibracije števcev električne energije. V tretjem koraku je opisano matematično ozadje modeliranja. V četrtem koraku je predstavljen postopek meritev, ki smo jih izvajali na tokovnem merilnem transformatorju. Na koncu je opisana vizualizacija podatkov s programskim jezikom Python.
Language:
Slovenian
Keywords:
števec električne energije
,
tokovni merilni transformator
,
kalibracija
,
standardi
,
polinomska regresija
,
Python
Work type:
Master's thesis/paper
Organization:
FE - Faculty of Electrical Engineering
Year:
2022
PID:
20.500.12556/RUL-141042
COBISS.SI-ID:
122736643
Publication date in RUL:
22.09.2022
Views:
889
Downloads:
276
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HANDŽAR, ADI, 2022,
Modeliranje tokovnega merilnega transformatorja
[online]. Master’s thesis. [Accessed 17 May 2025]. Retrieved from: https://repozitorij.uni-lj.si/IzpisGradiva.php?lang=eng&id=141042
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Secondary language
Language:
English
Title:
Modeling of current measuring transformer
Abstract:
The master's thesis describes the modeling of the influence of input current and outdoor temperature on the measurement accuracy of a current measuring transformer, which is used in the electricity meter as a sensor for measuring electric current. The obtained regression model was used in the programming of the compensation in the firmware. Firstly, we examined the types of current sensors and described the current transformer. Secondly, we described the calibration procedure of electricity meters. Thirdly, we described the mathematical background of the modeling. Fourthly, the procedure of measurements performed on the current measuring transformer is presented. Lastly, data visualization with the Python programming language is described.
Keywords:
electricity meter
,
current measuring transformer
,
calibration
,
standards
,
polynomial regression
,
Python
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