A stationary reference frame current control for a multi-level H-bridge power converter for universal and flexible power management in future electricity network

Mihai Ciobotaru, Florin Iov, Pericle Zanchetta, Y. De Novaes, Jon Clare

Publikation: Bidrag til bog/antologi/rapport/konference proceedingKonferenceartikel i proceedingForskningpeer review

7 Citationer (Scopus)
442 Downloads (Pure)

Resumé

More "green" power provided by Distributed Generation will enter into the European electricity network in the near future. In order to control the power flow and to ensure proper and secure operation of this future grid, with an increased level of the renewable power, new power electronic converters for grid connection of renewable sources will be needed. These power converters must be able to provide intelligent power management as well as ancillary services. This paper assesses a control method based on the stationary reference frame with Proportional-Resonant current controllers for a multi-level cascaded H-bridges power converter used for grid applications. Harmonic content in the Point of Common Coupling, system response for bidirectional power flow, voltage and frequency excursions as well as voltage unbalances and asymmetries and low voltage ride-though capabilities are studied.
OriginalsprogEngelsk
TitelProceedings of the 39th IEEE Annual Power Electronics Specialists Conference PESC'08
Antal sider7
ForlagIEEE
Publikationsdato2008
Sider3943-3949
ISBN (Trykt)978-1-4244-1668-4
DOI
StatusUdgivet - 2008
BegivenhedThe 39th IEEE Annual Power Electronics Specialists Conference PESC'08 - Rhodes, Grækenland
Varighed: 15 jun. 200819 jun. 2008
Konferencens nummer: 39

Konference

KonferenceThe 39th IEEE Annual Power Electronics Specialists Conference PESC'08
Nummer39
LandGrækenland
ByRhodes
Periode15/06/200819/06/2008

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Electric current control
Power converters
Electricity
Electric potential
Distributed power generation
Power electronics
Controllers
Power management

Bibliografisk note

Digital Object Identifier 10.1109/PESC.2008.4592570

IEEE Catalog Number: CFP08POE-CDR

Citer dette

Ciobotaru, M., Iov, F., Zanchetta, P., Novaes, Y. D., & Clare, J. (2008). A stationary reference frame current control for a multi-level H-bridge power converter for universal and flexible power management in future electricity network. I Proceedings of the 39th IEEE Annual Power Electronics Specialists Conference PESC'08 (s. 3943-3949). IEEE. https://doi.org/10.1109/PESC.2008.4592570
Ciobotaru, Mihai ; Iov, Florin ; Zanchetta, Pericle ; Novaes, Y. De ; Clare, Jon. / A stationary reference frame current control for a multi-level H-bridge power converter for universal and flexible power management in future electricity network. Proceedings of the 39th IEEE Annual Power Electronics Specialists Conference PESC'08. IEEE, 2008. s. 3943-3949
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title = "A stationary reference frame current control for a multi-level H-bridge power converter for universal and flexible power management in future electricity network",
abstract = "More {"}green{"} power provided by Distributed Generation will enter into the European electricity network in the near future. In order to control the power flow and to ensure proper and secure operation of this future grid, with an increased level of the renewable power, new power electronic converters for grid connection of renewable sources will be needed. These power converters must be able to provide intelligent power management as well as ancillary services. This paper assesses a control method based on the stationary reference frame with Proportional-Resonant current controllers for a multi-level cascaded H-bridges power converter used for grid applications. Harmonic content in the Point of Common Coupling, system response for bidirectional power flow, voltage and frequency excursions as well as voltage unbalances and asymmetries and low voltage ride-though capabilities are studied.",
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Ciobotaru, M, Iov, F, Zanchetta, P, Novaes, YD & Clare, J 2008, A stationary reference frame current control for a multi-level H-bridge power converter for universal and flexible power management in future electricity network. i Proceedings of the 39th IEEE Annual Power Electronics Specialists Conference PESC'08. IEEE, s. 3943-3949, The 39th IEEE Annual Power Electronics Specialists Conference PESC'08, Rhodes, Grækenland, 15/06/2008. https://doi.org/10.1109/PESC.2008.4592570

A stationary reference frame current control for a multi-level H-bridge power converter for universal and flexible power management in future electricity network. / Ciobotaru, Mihai; Iov, Florin; Zanchetta, Pericle; Novaes, Y. De; Clare, Jon.

Proceedings of the 39th IEEE Annual Power Electronics Specialists Conference PESC'08. IEEE, 2008. s. 3943-3949.

Publikation: Bidrag til bog/antologi/rapport/konference proceedingKonferenceartikel i proceedingForskningpeer review

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AU - Ciobotaru, Mihai

AU - Iov, Florin

AU - Zanchetta, Pericle

AU - Novaes, Y. De

AU - Clare, Jon

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AB - More "green" power provided by Distributed Generation will enter into the European electricity network in the near future. In order to control the power flow and to ensure proper and secure operation of this future grid, with an increased level of the renewable power, new power electronic converters for grid connection of renewable sources will be needed. These power converters must be able to provide intelligent power management as well as ancillary services. This paper assesses a control method based on the stationary reference frame with Proportional-Resonant current controllers for a multi-level cascaded H-bridges power converter used for grid applications. Harmonic content in the Point of Common Coupling, system response for bidirectional power flow, voltage and frequency excursions as well as voltage unbalances and asymmetries and low voltage ride-though capabilities are studied.

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Ciobotaru M, Iov F, Zanchetta P, Novaes YD, Clare J. A stationary reference frame current control for a multi-level H-bridge power converter for universal and flexible power management in future electricity network. I Proceedings of the 39th IEEE Annual Power Electronics Specialists Conference PESC'08. IEEE. 2008. s. 3943-3949 https://doi.org/10.1109/PESC.2008.4592570