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案件記録

METHOD FOR ENERGIZING A MODULAR MULTILEVEL CONVERTER

発明審査中
1閲覧数
7請求項 · 3 独立
§ Ⅰ

案件概要

発明者

Ying-Jiang HAFNER; Jimmy ÖHMAN; Andreas VINNBERG

IPC分類

H2M 1/36H2M 1/H2M 7/219

CPC分類

H2M1/36H2M1/67H2M7/219

The present disclosure relates to a method for energizing a modular multilevel converter () comprising converter valves (), each converter valve having a plurality of interconnected cells (), wherein each cell comprises a plurality of power electronic switches () in a full-bridge arrangement, a chargeable element (), and a plurality of gate drive units (), one gate drive unit for each power electronic switch. The method includes: providing power to the modular multilevel converter from an external power supply (S); powering the cells, thereby charging the chargeable elements of the cells (S); generating, when a cell voltage caused by said charging exceeds a first threshold voltage level, a cell sub-ready signal for that cell (S); generating, when at least a predetermined minimum number of cells have generated the sub-ready signal, a sub-ready_for_operation signal (S); and running a deblocking sequence comprising closing a first power electronic switch () in all cells to electrically configure the cells to be continuously charged as a half-bridge cells, and keep the first power electronic switch closed until the cell voltage has reached a converter operable voltage, which is higher than a second threshold voltage ().

原文(中国語)

The present disclosure relates to a method for energizing a modular multilevel converter () comprising converter valves (), each converter valve having a plurality of interconnected cells (), wherein each cell comprises a plurality of power electronic switches () in a full-bridge arrangement, a chargeable element (), and a plurality of gate drive units (), one gate drive unit for each power electronic switch. The method includes: providing power to the modular multilevel converter from an external power supply (S); powering the cells, thereby charging the chargeable elements of the cells (S); generating, when a cell voltage caused by said charging exceeds a first threshold voltage level, a cell sub-ready signal for that cell (S); generating, when at least a predetermined minimum number of cells have generated the sub-ready signal, a sub-ready_for_operation signal (S); and running a deblocking sequence comprising closing a first power electronic switch () in all cells to electrically configure the cells to be continuously charged as a half-bridge cells, and keep the first power electronic switch closed until the cell voltage has reached a converter operable voltage, which is higher than a second threshold voltage ().

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