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Multi-frequency power routing for cascaded H-bridge inverters in smart transformer application

机译:级联H桥逆变器在智能变压器中的多频电源路由

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The smart transformer is a solid state transformer with advanced control functionalities that can efficiently manage a low-voltage micro-grid by also supporting the medium-voltage grid. Cascaded H-bridge (CHB) converters proved to be a suitable option to realize the MV stage of the smart transformer due to their modularity and multi-level output. Normally the power is equally split among the CHB cells, however, in order to delay failures of the system, certain cells can be unloaded if premature deterioration is detected. In this work, multi-frequency power transfer is used to control the power processed by the dc/dc converters that supply the dc link of the CHB. The potential is analyzed analytically and validated experimentally.
机译:智能变压器是具有高级控制功能的固态变压器,通过支持中压电网,可以有效地管理低压微电网。层叠的H桥(CHB)转换器由于其模块化和多级输出而被证明是实现智能变压器中压级的合适选择。通常,功率在CHB电池之间平均分配,但是,为了延迟系统故障,如果检测到过早的劣化,则可以卸载某些电池。在这项工作中,多频功率传输用于控制由为CHB的直流链路供电的dc / dc转换器处理的功率。对该电位进行分析和实验验证。

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