DocumentCode
1498308
Title
Design and Control of a Modular Multilevel HVDC Converter With Redundant Power Modules for Noninterruptible Energy Transfer
Author
Son, Gum Tae ; Lee, Hee-Jin ; Nam, Tae Sik ; Chung, Yong-Ho ; Lee, Uk-Hwa ; Baek, Seung-Taek ; Hur, Kyeon ; Park, Jung-Wook
Author_Institution
Sch. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
Volume
27
Issue
3
fYear
2012
fDate
7/1/2012 12:00:00 AM
Firstpage
1611
Lastpage
1619
Abstract
This paper presents design and control methods for fault-tolerant operations with redundant converter modules, one of the most prominent features in modular multilevel converter (MMC) topology. In fully implementing MMC functionalities, a nearest level control is applied as a low-switching modulation method. A dual sorting algorithm is newly proposed for effectively reducing the switching commutations of each power module as well as for voltage balancing control. Built upon these primary MMC topological and control features, its redundant operation is comprehensively investigated for fail-safe energy transfer. In particular, a novel spare process is proposed to handle an emergency situation when the number of faulty power modules exceeds the module redundancy. Since topological redundancy may cause the switching commutations of power modules in an arm to be unevenly distributed, a practical and effective mitigation measure is incorporated to keep the energy balance while avoiding the undesired switching stresses. Rigorous simulation studies for MMC and its application for high-voltage direct current are performed to demonstrate the validity and effectiveness of the proposed spare process under normal and emergency conditions.
Keywords
HVDC power convertors; power transmission control; MMC topology; emergency conditions; fail-safe energy transfer; fault-tolerant operations; faulty power modules; high-voltage direct current; low-switching modulation method; modular multilevel HVDC converter control; modular multilevel converter topology; noninterruptible energy transfer; power module switching commutations; redundant converter modules; redundant power modules; spare process; undesired switching stresses; voltage balancing control; Capacitors; HVDC transmission; Modulation; Redundancy; Sorting; Switches; Topology; Dual sorting algorithm; modular multilevel converter; nearest level control; redundancy process; spare process; voltage-source converter–high-voltage direct current (VSC-HVDC);
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2012.2190530
Filename
6185713
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