Energy dissipation of MMC-HVDC based onshore wind power integration system with FB-DBS and DCCB
Cao, Shuai and Xiang, Wang and Lu, Xiaojun and Lin, Weixing and Zhang, Kai and Wen, Jinyu and Zhang, Xin (2019) Energy dissipation of MMC-HVDC based onshore wind power integration system with FB-DBS and DCCB. IET Renewable Power Generation. ISSN 1752-1416 (https://doi.org/10.1049/iet-rpg.2019.0491)
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Abstract
With the development of high-voltage direct current (HVDC), modular multilevel converter (MMC) is seeking its application in onshore wind power integration. AC and DC faults are important issues for the wind power integration system, during which the wind generation system continuously provides wind power and the surplus power may cause overvoltage to sub-modules of MMC. This study focuses on the energy dissipation during AC and DC faults for the overhead-line MMC-HVDC system integrating large-scale wind power. A two-terminal MMC-HVDC system with permanent magnet synchronous generator based wind farm is studied. Hybrid DC circuit breakers (DCCBs) are employed to interrupt DC fault current and the method based on measuring the rate of change of DC line voltage is adopted to trip DCCBs. Also a full-bridge sub-module based dynamic braking system (FB-DBS) is implemented at the DC link to absorb the surplus wind power in case of AC or DC faults in the HVDC grid. To ride-through AC and DC faults without blocking IGBTs, the control of hybrid DCCB and the system fault ride-through strategies are properly designed. PSCAD/EMTDC simulations are shown to demonstrate theoretical analysis.
ORCID iDs
Cao, Shuai, Xiang, Wang ORCID: https://orcid.org/0000-0002-4619-5849, Lu, Xiaojun, Lin, Weixing, Zhang, Kai, Wen, Jinyu and Zhang, Xin;-
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Item type: Article ID code: 70997 Dates: DateEvent8 November 2019Published8 November 2019Published Online1 November 2019AcceptedSubjects: Technology > Electrical engineering. Electronics Nuclear engineering Department: Faculty of Engineering > Electronic and Electrical Engineering Depositing user: Pure Administrator Date deposited: 18 Dec 2019 16:47 Last modified: 11 Nov 2024 12:33 URI: https://strathprints.strath.ac.uk/id/eprint/70997