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Laboratory Demonstration of a Multiterminal VSC-HVDC Power Grid

Type
Articles dans des revues avec comité de lecture
Auteur
AMAMRA, Sid-Ali
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
COLAS, Frédéric
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
GUILLAUD, Xavier
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
RAULT, Pierre
NGUEFEU, Samuel

URI
http://hdl.handle.net/10985/17726
DOI
10.1109/tpwrd.2016.2633327
Date
2017
Journal
IEEE Transactions on Power Delivery

Résumé

This paper presents the design, development, con- trol and supervision of a hardware-based laboratory Multi- Terminal-Direct-Current (MTDC) test-bed. This work is a part of the TWENTIES (Transmission system operation with large penetration of Wind and other renewable Electricity sources in Networks by means of innovative Tools and Integrated Energy Solutions) DEMO 3 European project which aims to demonstrate the feasibility of a DC grid through experimental tests. This is a hardware-in-the-loop DC system test-bed with simulated AC systems in real time simulation; the DC cables and some converters are actual, at laboratory scale. The laboratory scale test-bed is homothetic to a full scale high voltage direct current (HVDC) system: electrical elements are the same in per unit. The test-bed is supervised by a Supervisory Control And Data Acquisition (SCADA) system based on PcVue. Primary control based droop control method to provide DC grid power balance and coordinated control methods to dispatch power as scheduled by transmission system operator (TSO) are implemented. Since primary control acts as converter level by using local measure- ments, a coordinated control is proposed to manage the DC grid power flow. The implemented system is innovative and achievable for real-time, real-world MTDC-HVDC grid applications.

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Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Laboratory-based test bed of a three terminals DC networks using power hardware in the loop 
    AMAMRA, Sid-Ali; COLAS, Frédéric; GUILLAUD, Xavier; NGUEFEU, Samuel (IEEE, 2013)
    In this paper a three stations MTDC grid is presented, providing a specific application of our work. The experimental platform is intended to combine electrical power components and communication/control equipment with ...
  • Dynamic Analysis of MMC-Based MTDC Grids : Use of MMC Energy to Improve Voltage Behavior 
    FREYTES, Julian; AKKARI, Samy; RAULT, Pierre; BELHAOUANE, Mohamed Moez; GRUSON, François; COLAS, Frédéric; GUILLAUD, Xavier (Institute of Electrical and Electronics Engineers (IEEE), 2019)
    This article deals with DC voltage dynamics of Multi-Terminal HVDC grids (MTDC) with energy-based controlled Modular Multilevel Converters (MMC) adopting the commonly used power-voltage droop control technique for power ...
  • Grid Connected Inverter Behavior with an Output LC Filter under Voltage Sag Operation 
    SALHA, Fouad; COLAS, Frédéric; GUILLAUD, Xavier (2009)
    The aim of this paper is to propose an over current limitation and voltage control strategy for a grid connected inverter with a LC output filter used in distributed generation and in case of voltage sag. This strategy ...
  • Impact of control algorithm solutions on Modular Multilevel Converters electrical waveforms and losses 
    GRUSON, François; FREYTES, Julian; SAMIMI, Shabab; DELARUE, Philippe; GUILLAUD, Xavier; COLAS, Frédéric; BELHAOUANE, Mohamed Moez (IEEE, 2015)
    Modular Multilevel Converters (MMC) are becoming increasingly popular with the development of HVDC connection and, in the future, Multi Terminal DC grid. A lot of publications have been published about this topology these ...
  • Représentation Energétique Macroscopique et Diagramme PQ des Convertisseurs Modulaires Multi-niveaux 
    SAMIMI, 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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