Enhanced Discrete-Time Differentiators for LCL Resonance Damping Through Capacitor Voltage Feedback

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Olímpio Filho, J. de A., Silva, P. F., de Oro Arenas, L., Curi Busarello, T. D., Godoy Simões, M., & Morales Paredes, H. K. (2026). Enhanced Discrete-Time Differentiators for LCL Resonance Damping Through Capacitor Voltage Feedback. IEEE Open Journal of Industry Applications , 7, 756-776. https://doi.org/10.1109/OJIA.2026.3708024
© 2026 The Authors. This work is licensed under a Creative Commons Attribution 4.0 License. For more information, see https://creativecommons.org/licenses/by/4.0/
Lataukset11

Kuvaus

The capacitor current active damping method is widely used to dampen the LCL-filter resonance in grid-connected inverters due to its simple implementation. Alternatively, it can be replaced by the capacitor voltage active damping (CVAD) as a low-cost solution, utilizing the capacitor voltage of LCL-filter for synchronization and damping, avoiding an extra sensor. A critical part of CVAD is the differentiator that is used to estimate capacitor current, yet, differentiators bring challenges due to their sensitivity to noise. To address these challenges, this article proposes a family of enhanced discrete-time differentiators —Lanczos, Super Lanczos 1, and Super Lanczos 2—for CVAD. This class of discrete-time differentiators based on finite impulse response filters is discussed, with detailed explanations provided on how to obtain the coefficients of the differentiators. The system was implemented using controller hardware-in-the-loop and experimental results demonstrate the effectiveness of the proposed method in damping the LCL resonance in a single-phase grid-connected inverter under steady state, under reference step conditions, and in the presence of noise.

Emojulkaisu

ISBN

ISSN

2644-1241

Aihealue

Kausijulkaisu

IEEE open journal of industry applications|7

OKM-julkaisutyyppi

A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä (vertaisarvioitu)