Design and implementation of a triphasic energy and harmonics meter

Descripción del Articulo

This work presents the development of a device capable of measuring various parameters related to the tarification and quality of an electrical supply, in this case a 220V three-phase and 60Hz one, these are: the effective values and harmonics ​​of the voltages and currents of the system, together w...

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Detalles Bibliográficos
Autores: Farfán Lira, José Enrique, Betetta Gómez, Judith Luz, Navarro Solano, Johann, Armas Sedano, Bryam Raúl
Formato: artículo
Fecha de Publicación:2023
Institución:Universidad Nacional de Ingeniería
Repositorio:Revistas - Universidad Nacional de Ingeniería
Lenguaje:español
OAI Identifier:oai:oai:revistas.uni.edu.pe:article/1659
Enlace del recurso:https://revistas.uni.edu.pe/index.php/tecnia/article/view/1659
Nivel de acceso:acceso abierto
Materia:medidor de energía
medición inteligente
armónicos
submuestreo
diseño de instrumento
energy metter
smart mettering
harmonics
undersampling
instrument dessign
Descripción
Sumario:This work presents the development of a device capable of measuring various parameters related to the tarification and quality of an electrical supply, in this case a 220V three-phase and 60Hz one, these are: the effective values and harmonics ​​of the voltages and currents of the system, together with their respective phase shifts, the systems frequency and the triphasic powers and energies (both active, reactive and apparent). This device is based on an ESP32 microcontroller programmed in C++ language which will be wirelessly connected to the web platform via Wi-Fi for remote reading. The external indicator for the measurement of active energy is through the pulsations of a led with a rate of 950 impulses/kw-h. In the case of harmonics measurement, the algorithm applies the fast Fourier transform, or FFT, on a representative wave period obtained by undersampling methods, or low-speed sampling, to increase the range of legible harmonics. The validation of the energy measurement is carried out by performing the contrast test detailed in IEC 62053-21, resulting in the class 1 and the validation of the others parameters meassurement is carried out by comparison with a network analyzer using the acceptance criteria of the IEC 61557-12 standard, also being class 1, both tests carried out in the electricity laboratory N°6 of the UNI.
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