The paper proposes a simplified and affordable procedure for instrument transformers frequency characterization for medium voltage applications. It consists of a two steps measurement procedure, where both steps involve the generation of sine waves only, so that the it can be easily performed in instrument transformers calibration laboratories without requiring additional generation features. In the first step, a 50 Hz measurement of the Voltage Instrument Transformer ratio error at rated voltage is performed. The second step consists of a frequency sweep performed at low voltage up to the first resonance. By these two data sets, an approximated but accurate frequency response can be easily obtained using a non-linear fitted model. In the paper, a commercial voltage instrument transformer for medium voltage grids is characterized by the proposed method; results are shown and validated by comparison with a reference frequency characterization performed at INRIM under rated voltage.
A simplified procedure for the Accurate Frequency Response Identification of Voltage Transformers / Crotti, Gabriella; Giordano, Domenico; Letizia, Palma Sara; Delle Femine, Antonio; Luiso, Mario. - (2020), pp. 50-54. (Intervento presentato al convegno 24th IMEKO TC4 International Symposium 22nd International Workshop on ADC and DAC Modelling and Testing IMEKO TC-4 2020).
A simplified procedure for the Accurate Frequency Response Identification of Voltage Transformers
Giordano, Domenico;Letizia, Palma Sara;
2020
Abstract
The paper proposes a simplified and affordable procedure for instrument transformers frequency characterization for medium voltage applications. It consists of a two steps measurement procedure, where both steps involve the generation of sine waves only, so that the it can be easily performed in instrument transformers calibration laboratories without requiring additional generation features. In the first step, a 50 Hz measurement of the Voltage Instrument Transformer ratio error at rated voltage is performed. The second step consists of a frequency sweep performed at low voltage up to the first resonance. By these two data sets, an approximated but accurate frequency response can be easily obtained using a non-linear fitted model. In the paper, a commercial voltage instrument transformer for medium voltage grids is characterized by the proposed method; results are shown and validated by comparison with a reference frequency characterization performed at INRIM under rated voltage.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2890793