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Coupled inductor bidirectional DC-DC converter for improved performance

机译:耦合电感器双向DC-DC转换器可提高性能

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Energy storage is the major concern in smart micro grids like in renewable power generation, electric vehicles and small scale DC-UPS systems. This paper proposes analysis, and voltage mode control of coupled inductor bidirectional converter. Unfortunately, switches of four and beyond in isolated schemes increase production costs and reduce conversion efficiency, and non-isolated topologies suffer from high voltage/current stress. As compared with the counterparts of conventional converter topologies, the proposed converter has the merits of less component count, high efficiency, and smaller size. The high voltage diversity enables a battery module of low voltage to be interfaced with the high-voltage dc bus or the micro grid for subsequent utilization. The battery fed bidirectional converter with controller to regulate the DC link voltage and battery charge voltage is implemented in the Simulink/Matlab environment. Also, experimental confirmation of the proposed converter is shown.
机译:能源存储是智能微电网中的主要关注点,例如可再生能源发电,电动汽车和小型DC-UPS系统。本文提出了耦合电感双向转换器的分析和电压模式控制。不幸的是,隔离方案中的四个及以上开关增加了生产成本并降低了转换效率,并且非隔离拓扑遭受高电压/电流应力的困扰。与传统转换器拓扑结构的同类产品相比,该转换器具有组件数量少,效率高和尺寸小的优点。高压分集使低压电池模块可以与高压dc总线或微电网连接,以供后续使用。在Simulink / Matlab环境中实现了带有控制器的电池供电双向转换器,该控制器可调节DC链路电压和电池充电电压。同样,显示了对所提出的转换器的实验确认。

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