DocumentCode :
602107
Title :
Fault ride-through capability enhancement based on flywheel energy storage system for wind farms connected via VSC high voltage DC transmission
Author :
Ahmed, K.H. ; Abdel-khalik, A.S. ; Elserougi, A. ; Massoud, A. ; Ahmed, Shehab
Author_Institution :
Sch. of Eng., Univ. of Aberdeen, Aberdeen, UK
fYear :
2012
fDate :
4-5 Dec. 2012
Firstpage :
1
Lastpage :
6
Abstract :
This paper proposes a recovery strategy for wind energy-fed voltage source converter high voltage DC transmission systems, capable of maintaining power balance between the AC and DC sides during different AC faults. This prevents the DC link voltage rise as a result of trapped energy. This reduces the voltage and current stresses on the switching devices. Also, the strategy ensures the converters remain connected to the AC network to provide the necessary voltage support, within the converter reactive power capability. The recovery strategy is implemented by introducing a flywheel energy storage system based on induction machine in parallel with the grid side inverter. Due to the parallel combination of the grid side inverter and flywheel induction machine (FW-IM), the trapped energy in the DC link during AC faults can be eliminated; as a result of finding another path for the power of the wind turbines during AC faults. To illustrate the feasibility of the proposed HVDC system, this paper assesses its dynamic performance during steady-state and network alterations, including its response to AC side faults.
Keywords :
HVDC power transmission; asynchronous machines; flywheels; invertors; power convertors; power generation faults; wind power plants; AC faults; AC network; DC link; FW-IM; VSC high voltage DC transmission systems; converter reactive power capability; current stresses; fault ride-through capability enhancement; flywheel energy storage system; flywheel induction machine; grid side inverter; switching devices; voltage stresses; wind energy-fed voltage source converter; wind farms; Fault ride-through; Flywheel; HVDC; VSC;
fLanguage :
English
Publisher :
iet
Conference_Titel :
AC and DC Power Transmission (ACDC 2012), 10th IET International Conference on
Conference_Location :
Birmingham
Electronic_ISBN :
978-1-84919-700-7
Type :
conf
DOI :
10.1049/cp.2012.1988
Filename :
6521287
Link To Document :
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