Design-Oriented Dissipativity Robustness Enhancement for Current Control of LCL- Filtered Grid-Following VSCs

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Abstract

Capacitor current active damping can effectively enhance dissipativity of current control for grid-connected voltage source converters. However, the dissipative characteristic of converter output admittance can easily be jeopardized by capacitor voltage feedforward and passive filter parameter deviation. To fill this gap, a design-oriented control scheme is proposed in this paper. First, a moving-average-filter-based filter is inserted in the capacitor voltage feedforward path to achieve the dissipativity near the switching frequency. Then, the capacitor current damping coefficient is designed based on the required passive filter parameter deviation. Finally, the effectiveness of the proposed scheme is verified through the experiments.
OriginalsprogEngelsk
TitelProceedings of the 2023 IEEE Applied Power Electronics Conference and Exposition (APEC)
Antal sider5
ForlagIEEE (Institute of Electrical and Electronics Engineers)
Publikationsdatomar. 2023
Sider2796-2800
Artikelnummer10131261
ISBN (Trykt)978-1-6654-7538-9, 978-1-6654-7540-2
ISBN (Elektronisk)978-1-6654-7539-6
DOI
StatusUdgivet - mar. 2023
Begivenhed38th Annual IEEE Applied Power Electronics Conference and Exposition, APEC 2023 - Orlando, USA
Varighed: 19 mar. 202323 mar. 2023

Konference

Konference38th Annual IEEE Applied Power Electronics Conference and Exposition, APEC 2023
Land/OmrådeUSA
ByOrlando
Periode19/03/202323/03/2023
SponsorIEEE Industry Applications Society (IAS), IEEE Power Electronics Society (PELS), Power Sources Manufacturers Association (PSMA)
NavnI E E E Applied Power Electronics Conference and Exposition. Conference Proceedings
ISSN1048-2334

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