DocumentCode :
11660
Title :
Hybrid Cascaded Modular Multilevel Converter With DC Fault Ride-Through Capability for the HVDC Transmission System
Author :
Rui Li ; Adam, Grain Philip ; Holliday, Derrick ; Fletcher, John E. ; Williams, Barry W.
Author_Institution :
Dept. of Electron. & Electr. Eng., Univ. of Strathclyde, Glasgow, UK
Volume :
30
Issue :
4
fYear :
2015
fDate :
Aug. 2015
Firstpage :
1853
Lastpage :
1862
Abstract :
A new hybrid cascaded modular multilevel converter for the high-voltage dc transmission system is presented. The half-bridge cells are used on the main power stage and the cascade full-bridge (FB) cells are connected to its ac terminals. The main power stage generates the fundamental voltages with quite low switching frequency, resulting in relatively low losses. The cascaded FB cells only attenuate the harmonics generated by the main power stage, without contribution to the power transfer. Thus, the energy-storage requirement of the cascaded FB cells is low and the capacitance of FB cells is reduced significantly. Due to the dc fault reverse blocking capability of the cascaded FB cells, the proposed topology can ride-through the pole-to-pole dc fault. In addition, the soft restart is achieved after the fault is eliminated, without exposing the system to significant inrush current. Besides, the average-value model of the proposed topology is derived, based on which the control strategy is presented. The results show the feasibility of the proposed converter.
Keywords :
HVDC power convertors; HVDC power transmission; bridge circuits; harmonics suppression; power transmission control; power transmission faults; DC fault reverse blocking capability; DC fault ride through capability; HVDC transmission system; ac terminals; average value model; cascaded FB cells; cascaded full-bridge cell; half-bridge cells; harmonics attenuation; hybrid cascaded modular multilevel converter; inrush current; pole-to-pole DC fault; Capacitors; Circuit faults; Converters; HVDC transmission; Reactive power; Topology; Voltage control; DC fault blocking; dc fault tolerant; hybrid cascaded modular multilevel converter (HC-MMC); soft restart; voltage-source-converter–high-voltage dc (VSC-HVDC) transmission system;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2015.2389758
Filename :
7005534
Link To Document :
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