Robust nonadaptive three-phase quasi-type-I PLL approach under distorted grid voltage conditions
Paper
| Paper/Presentation Title | Robust nonadaptive three-phase quasi-type-I PLL approach under distorted grid voltage conditions |
|---|---|
| Presentation Type | Paper |
| Authors | Verma, Anant Kumar, Burgos-Mellado, Claudio, Gautam, Samir, Ahmed, Hafiz, Kim, Taesic, Akhtar, Mohd. Afroz, Fedele, Giuseppe and Roncero-Sánchez, Pedro |
| Journal or Proceedings Title | Proceedings of 2022 IEEE Global Conference on Computing, Power and Communication Technologies (GlobConPT) |
| Number of Pages | 6 |
| Year | 2022 |
| Publisher | IEEE (Institute of Electrical and Electronics Engineers) |
| Place of Publication | United States |
| ISBN | 9781665493659 |
| 9781665493666 | |
| Digital Object Identifier (DOI) | https://doi.org/10.1109/GlobConPT57482.2022.9938215 |
| Web Address (URL) of Paper | https://ieeexplore.ieee.org/abstract/document/9938215 |
| Web Address (URL) of Conference Proceedings | https://ieeexplore.ieee.org/xpl/conhome/9938124/proceeding |
| Conference/Event | 2022 IEEE Global Conference on Computing, Power and Communication Technologies (GlobConPT) |
| Event Details | 2022 IEEE Global Conference on Computing, Power and Communication Technologies (GlobConPT) Delivery In person Event Date 23 to end of 25 Sep 2023 Event Location New Delhi, India |
| Abstract | In this article, a three-phase non-adaptive pre-filtered quasi-type-I (QTI) phase-locked loop (PLL) approach is proposed for fast detection of fundamental positive sequence components. For this purpose, a non-adaptive pre-filtering architecture that relies on Lyapunov estimation theory is investigated. It is noted that the Lyapunov's principle-based QTI-PLLs are sensitive to the presence of fundamental negative sequence (FNS), harmonics, and DC-offset components. Thus, it requires additional efforts to resolve the aforementioned issues. Since the internal state-variable feed-backs in the Lyapunov's demodulation approach leads to poor dynamic performance, an improved immunity against DC-offset, harmonics and the FNS are achieved by avoiding state-feedback paths. Consequently, the demodulated error signals in the dq-frame can further reduce the number of state variables and efficiently reject the FNS components. Finally, the numerical results demonstrate the efficacy of the proposed method with respect to an enhanced QTI-PLL approach. |
| Keywords | Demodulation; Lyapunov’s filter; moving average filter (MAF); phase-locked loop (PLL); Three-phase systems |
| Contains Sensitive Content | Does not contain sensitive content |
| ANZSRC Field of Research 2020 | 400802. Electrical circuits and systems |
| Public Notes | The accessible file is the accepted version of the paper. Please refer to the URL for the published version. |
| Byline Affiliations | University of O'Higgins, Chile |
| University of Sydney | |
| Bangor University, United Kingdom | |
| Texas A&M University, United States | |
| CSIR - CMERI - Aerosystems Laboratory, India | |
| University of Calabria, Italy | |
| University of Castile-La Mancha, Spain |
https://research.usq.edu.au/item/zz617/robust-nonadaptive-three-phase-quasi-type-i-pll-approach-under-distorted-grid-voltage-conditions
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