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A new DC-ice-melting device based on hybrid MMC structure

机译:一种基于混合MMC结构的新型直流熔化装置

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摘要

In this paper, a new DC ice-melting scheme based on hybrid modular multilevel converter (MMC) is proposed considering the problems of existing DC ice-melting device, such as high harmonic content, complicated mode switching operation, large size and so on. In the scheme, a novel structure of MMC is composed of the upper bridge arm all using full bridge sub-module (FBSM) and the lower bridge arm all using half bridge sub-module (HBSM). In normal operation, the device implement reactive power compensation as static synchronous compensation (STATCOM), and under the condition of grid icing, the device can output continuous controllable DC voltage and current ranging from 0 to the set value for grid ice-melting. In this way, the economic benefits can be improved effectively. The outstanding advantages of the device based on MMC are described, and analysis of mathematical model and power to the structure is presented in this paper. A corresponding hierarchical control strategy is put forward, then feasibility and effectiveness of the scheme and control strategy are verified by simulation in PSCAD/EMTDC.
机译:在本文中,提出了一种基于混合模块化多级转换器(MMC)的新型DC熔化方案,考虑到现有的直流冰熔化装置,例如高谐波含量,复杂模式切换操作,大尺寸等。在该方案中,MMC的新颖结构由所有使用全桥子子模块(FBSM)和所有使用半桥子模块(HBSM)的下桥臂组成的上桥臂组成。在正常操作中,该器件实现无功补偿作为静态同步补偿(Statcom),并且在网格结冰的条件下,该装置可以输出连续可控的直流电压和电流从0到设定值的网格熔化的设定值。通过这种方式,可以有效地提高经济效益。描述了基于MMC的器件的出色优势,并在本文中提出了数学模型和结构的功率。提出了相应的分层控制策略,然后通过PSCAD / EMTDC的模拟验证了方案和控制策略的可行性和有效性。

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