A soft start-up method for DC micro-grid based on improved two-level VSC with DC fault ride-through capability

Wen, Weijie and Lyu, Rui and Li, Botong and Cao, Hong and Yu, Jiali and Li, Bin and Popov, Marjan (2023) A soft start-up method for DC micro-grid based on improved two-level VSC with DC fault ride-through capability. Frontiers in Energy Research, 11. ISSN 2296-598X

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Abstract

For the black start-up of DC micro-grids, three-phase charging resistors are required to limit the uncontrollable surge current. The main drawback of this start-up method is the difficulty in determining the appropriate resistance value to achieve a rapid start-up and limit the surge current with the change of grid parameters. To address this problem, this article proposes a soft start-up method for the DC micro-grid based on an improved two-level voltage source converter (VSC). Specifically, an silicon controlled rectifier and anti-parallel diode are added in each up-bridge-arm in the improved VSC. By conducting a dynamic control strategy of the firing angle on the SCRs, the start-up current can always be maintained near a given value to achieve rapid start-up. Moreover, the improved VSC has DC fault ride-through capability. The simulation results based on PSCAD/EMTDC are provided to validate the feasibility of the proposed start-up method.

Item Type: Article
Subjects: Apsci Archives > Energy
Depositing User: Unnamed user with email support@apsciarchives.com
Date Deposited: 25 Apr 2023 05:03
Last Modified: 03 Feb 2024 04:27
URI: http://eprints.go2submission.com/id/eprint/806

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