DocumentCode
1359222
Title
Efficient Modeling of Modular Multilevel HVDC Converters (MMC) on Electromagnetic Transient Simulation Programs
Author
Gnanarathna, Udana N. ; Gole, Aniruddha M. ; Jayasinghe, Rohitha P.
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Manitoba, Winnipeg, MB, Canada
Volume
26
Issue
1
fYear
2011
Firstpage
316
Lastpage
324
Abstract
The number of semiconductor switches in a modular multilevel converter (MMC) for HVDC transmission is typically two orders of magnitudes larger than that in a two or three level voltage-sourced converter (VSC). The large number of devices creates a computational challenge for electromagnetic transient simulation programs, as it can significantly increase the simulation time. The paper presents a method based on partitioning the system´s admittance matrix and deriving an efficient time-varying Thévenin´s equivalent for the converter part. The proposed method does not make use of approximate interfaced models, and mathematically, is exactly equivalent to modelling the entire network (converter and external system) as one large network. It is shown to drastically reduce the computational time without sacrificing any accuracy. The paper also presents control algorithms and other modelling aspects. The efficacy of the proposed method is demonstrated by simulating a point-to-point VSC-MMC-based HVDC transmission system.
Keywords
EMTP; HVDC power convertors; power semiconductor switches; power system simulation; admittance matrix; efficient modeling; electromagnetic transient simulation programs; modular multilevel HVDC converters; modular multilevel converter; point-to-point VSC-MMC-based HVDC transmission system; semiconductor switches; time-varying Thévenin´s equivalent; voltage-sourced converter; Admittance; Capacitors; Computational modeling; HVDC transmission; Mathematical model; Power conversion; Electromagnetic transients (EMT) simulation; HVDC transmission; Thévenin´s equivalents; modular multilevel converter (MMC); voltage-sourced converter (VSC);
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2010.2060737
Filename
5607337
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