DocumentCode :
267596
Title :
Large-scale implementation and validation of multivariable control with grid objectives of an HVDC link
Author :
Arioua, Leyla ; Marinescu, Bogdan
Author_Institution :
R&D Div., RTE, Versailles, France
fYear :
2014
fDate :
18-22 Aug. 2014
Firstpage :
1
Lastpage :
7
Abstract :
The HVDC links are increasingly used not only to interconnect asynchronous AC systems but are also embedded into a same meshed AC power system. Thanks to its speed and flexibility, the HVDC technology is able to provide transmission system advantages as transfer capacity enhancement and power flow control. In addition, studies have shown that the way of controlling the HVDC converters impacts the stability of the AC system. This can be particularly exploited to enhance the dynamic power system performances during transients. In this paper a robust multivariable control design for HVDC link converters is proposed. It is based on the coordination of the control actions of the HVDC converters and the use of a control model which takes into account the dynamics that mostly impact stability of the neighbor zone of the HVDC link. This new methodology was used to synthesize the controller for an actual grid 1000 MW HVDC link reinforcement project called "Midi-Provence" in the southern part of the French grid. The synthesis, implementation and validation processes are presented in detail. The new controller is tested in comparison with the standard vector control. A large-scale dynamic model of the whole European power system, currently used and updated by the European TSO\´s for the interconnection studies has been used with Eurostag simulation software.
Keywords :
HVDC power convertors; HVDC power transmission; control system synthesis; load flow control; multivariable control systems; power grids; power system interconnection; power transmission control; robust control; European TSO; European power system; Eurostag simulation software; French grid; HVDC link converters; Midi-Provence; asynchronous AC systems; dynamic power system performances; grid link reinforcement project; interconnection studies; large-scale dynamic model; meshed AC power system; neighbor zone; power 1000 MW; power flow control; robust multivariable control design; standard vector control; transfer capacity enhancement; transmission system; validation processes; Europe; HVDC transmission; Mathematical model; Power system dynamics; Power system stability; Sensitivity; Stability analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Systems Computation Conference (PSCC), 2014
Conference_Location :
Wroclaw
Type :
conf
DOI :
10.1109/PSCC.2014.7038407
Filename :
7038407
Link To Document :
بازگشت