DocumentCode :
133029
Title :
Ride-through capability enhancement of VSC-HVDC based wind farms using low speed flywheel energy storage system
Author :
Daoud, M.I. ; Massoud, A. ; Ahmed, Shehab ; Abdel-khalik, A.S. ; Elserougi, A.
Author_Institution :
Qatar Univ., Doha, Qatar
fYear :
2014
fDate :
16-20 March 2014
Firstpage :
2706
Lastpage :
2712
Abstract :
Reliable balancing of active power generated via wind farms is vital for power system stability and for maintaining system frequency deviations within acceptable limits. This paper presents a backup power balancing technique for the energy-fed voltage source converter high voltage DC transmission systems during different AC side faults based on flywheel energy storage systems. The proposed technique aims to prevent the DC link voltage rise during faults which reduces the voltage and current stresses on the switching devices. An induction machine (IM) based flywheel energy storage system is connected in parallel with the onshore side converter; therefore, the trapped energy in the DC link during AC faults can be stored in the flywheel. During normal conditions, the flywheel storage system is normally used for power leveling. A simulation case study for the proposed system using a 100MW HVDC system is presented, while experimental validation is carried out using a 2.2kW prototype flywheel IM storage system.
Keywords :
HVDC power convertors; HVDC power transmission; asynchronous machines; flywheels; power system stability; power transmission faults; wind power plants; HVDC system; IM; VSC-HVDC based wind farms; ac side faults; active power; backup power balancing technique; dc link voltage; energy-fed voltage source converter; frequency deviations; high voltage dc transmission systems; induction machine; low speed flywheel energy storage system; onshore side converter; power 100 MW; power 2.2 kW; power leveling; power system stability; ride-through capability enhancement; switching devices; Flywheels; HVDC transmission; Induction machines; Power conversion; Voltage control; Wind farms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2014 Twenty-Ninth Annual IEEE
Conference_Location :
Fort Worth, TX
Type :
conf
DOI :
10.1109/APEC.2014.6803687
Filename :
6803687
Link To Document :
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