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    Frequency estimation in DSOGI cells by means of the teager energy operator

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    FrequencyEstimationi ... (1.239Mb)
    Identificadores
    URI: https://hdl.handle.net/10902/27701
    DOI: 10.1109/COMPEL53829.2022.9829953
    ISBN: 978-1-6654-1081-6
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    Autoría
    Pigazo López, AlbertoAutoridad Unican; Azcondo Sánchez, Francisco JavierAutoridad Unican; Brañas Reyes, ChristianAutoridad Unican; Lamo Anuarbe, Paula
    Fecha
    2022
    Derechos
    © 2022 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
    Publicado en
    IEEE 23rd Workshop on Control and Modeling for Power Electronics (COMPEL), Tel-Aviv, Israel, 2022
    Editorial
    Institute of Electrical and Electronics Engineers, Inc.
    Enlace a la publicación
    https://doi.org/10.1109/COMPEL53829.2022.9829953
    Palabras clave
    PLL
    Synchronization
    Three-phase
    Converter
    Second order generalized integrator
    Resumen/Abstract
    Second Order Generalized Integrator (SOGI) cells are used for notch filtering due to their simplicity and their harmonic rejection capability. SOGI and Dual SOGI (DSOGI) filter cells, combined with Frequency Locked Loops (FLL) to adjust the notch frequency, are commonly used in both 1f and 3f grid following (GFL) power converters for synchronization, i.e. SOGI-FLL and DSOGI-FLL, respectively. The FLL relies on a gradient descent method to minimize a cost function built up around one inner SOGI cell variable, e.g., the in-quadrature voltage estimation, and one outer variable, i.e. the error signal due to the SOGI filter cell. As a result, the FLL manages relatively large DC offsets and harmonic distortion passing through the outer SOGI cell variable, which deteriorates the frequency estimation and then, the SOGI-FLL performance. To attenuate such issues, the method proposed in this digest only uses inner SOGI cell variables. It minimizes the deviation between the estimated grid frequency and the frequency of the signal across the SOGI cell, which is detected through the Teager Energy Operator (TEO). The proposal is validated in simulation and experimentally.
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    UNIVERSIDAD DE CANTABRIA

    Repositorio realizado por la Biblioteca Universitaria utilizando DSpace software
    Contacto | Sugerencias
    Metadatos sujetos a:licencia de Creative Commons Reconocimiento 4.0 España