DocumentCode :
80935
Title :
A Coordination Control Strategy of Voltage-Source-Converter-Based MTDC for Offshore Wind Farms
Author :
Zhuo-di Wang ; Ke-Jun Li ; Jing-guo Ren ; Li-Jun Sun ; Jian-Guo Zhao ; Yong-Liang Liang ; Wei-Jen Lee ; Zhao-hao Ding ; Ying Sun
Author_Institution :
Key Lab. of Power Syst. Intell. Dispatch & Control of the Minist. of Educ., Shandong Univ., Jinan, China
Volume :
51
Issue :
4
fYear :
2015
fDate :
July-Aug. 2015
Firstpage :
2743
Lastpage :
2752
Abstract :
Similar to other major electrical apparatuses, the reliability and stability of the dc network is becoming the most important issue when using the voltage-source-converter-based multiterminal dc (VSC-MTDC) system for offshore wind power integration. A coordinated control strategy of VSC-MTDC named master-auxiliary is proposed by combining the advantages of the voltage margin and voltage droop control. This strategy has three advantages. First, the master converter station with the constant dc voltage control can provide reference to the system dc voltage and is helpful for the stabilization of dc voltage. Second, the integrated control of the dc voltage in both master and auxiliary converter stations are helpful for providing adequate active power control (APC) and restraining large power variation. Third, the APC converter station can serve as a backup for the dc voltage control in abnormal conditions. In order to guarantee the reliability and stability of the system under various operating conditions, this paper introduces the priority of dc voltage control to the coordination control strategy. Moreover, a parameter optimizing method of controllers for this strategy is also proposed. Finally, the effectiveness of the master-auxiliary control is verified by simulations under normal and abnormal conditions.
Keywords :
power control; power convertors; power generation reliability; power system stability; voltage control; wind power plants; APC; VSC-MTDC system; active power control; auxiliary converter stations; constant dc voltage control; coordinated control strategy; coordination control strategy; dc network; dc voltage stabilization; integrated control; master converter station; master-auxiliary control; offshore wind power integration; system dc voltage; voltage droop control; voltage margin; voltage-source-converter-based multiterminal dc system; Control systems; Load flow; Power conversion; Power transmission; Voltage control; Wind farms; Coordination control; DC transmission; coordination control; direct-current (dc) transmission; master-auxiliary control.; master???auxiliary control; multi-terminal DC (MTDC); multiterminal dc (MTDC); voltage source converter (VSC); voltage-source converter (VSC);
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2015.2407325
Filename :
7050257
Link To Document :
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