Behaviour of Modular Multilevel DC/DC ConverterWith DC Voltage Control Integrated in a Multi-terminal DC System Under Fault Conditions
Communication avec acte
Auteur
SHAFIQUE, Ghazala
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
GRUSON, Francois
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
Résumé
The development of multi-terminal DC (MTDC) networks has various challenges as interconnecting grids of different voltages
and grounding schemes, DC grid protection and power flow. DC/DC converter has emerged as the solution for interconnecting
HVDC links with different specifications. In this paper, the Front-to-Front Modular Multilevel Converter (F2F-MMC) topology
is adopted for DC/DC converter, which can act as a firewall between the healthy and faulty grid during DC faults. Along with this,
DC/DC converters when operated in DC voltage control mode can provide supplementary functionalities such as participating in
DC grid voltage management and increasing the reliability of the system. In this study, the F2F-MMC converter is operated with
a virtual resistance DC voltage controller integrated into an MTDC system. A pole-to-pole DC fault is applied on the MTDC grid
and the influence of the virtual resistance controller associated with the DC/DC converter is studied for re-establishing the power
flow after DC faults.
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Communication avec acteSHAFIQUE, Ghazala; BOUKHENFOUF, Johan; GRUSON, Francois; SAMIMI, Shabab; DELARUE, Philippe; LE MOIGNE, Philippe; COLAS, Frédéric; MERLIN, Michael; GUILLAUD, Xavier (2023-10)The Modular Multi-Level DC-DC Converter (M2DC) is an attractive non-isolated DC-DC converter topology for HVDC grid. In order to carry out MTDC grid stability studies, the development of reduce order models of converters ...
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Article dans une revue avec comité de lectureSHAFIQUE, Ghazala; BOUKHENFOUF, Johan; GRUSON, Francois; SAMIMI, Shabab; COLAS, Frédéric; GUILLAUD, Xavier (Institution of Engineering and Technology (IET), 2024-09)AbstractThe future multi‐terminal direct‐current (MTDC) grid will require the interconnection of point‐to‐point high‐voltage (HV) DC links with different specifications such as DC voltage level, system grounding configuration ...
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Communication avec acteThe increasing demand to utilize renewable energy necessitates the transmission of power over long distances. HVDC technology has emerged as the optimal solution for this purpose due to fewer losses and good economic ...
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Représentation Energétique Macroscopique et Diagramme PQ des Convertisseurs Modulaires Multi-niveaux Communication avec acteSAMIMI, Shabab; GRUSON, Francois; DELARUE, Philippe; GUILLAUD, Xavier; COLAS, Frederic (2014-10-08)Le système étudié dans cet article est un convertisseur Modulaires Multi-Niveaux. Dans une première partie, l'utilisation de la Représentation Energétique Macroscopique (REM) permet de mettre en évidence les couplages ...
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Communication avec acteQORIA, Taoufik; COLAS, Frédéric; GUILLAUD, Xavier; DEBRY, Marie-Sophie; PREVOST, Thierry; GRUSON, Francois (IEEE, 2018)From the origin of the grid, energy has been delivered to electrical loads mainly by synchronous machines. All the main rules to manage the grid have been based on the electromechanical behavior of these machines which ...