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A Redundant Design and Control Strategy for Hybrid Dual Active Bridges Based DC Transformer

机译:基于混合双极有源桥的直流变压器的冗余设计与控制策略

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In this paper, a hot-standby redundant design and its control strategy are proposed for hybrid dual active bridges (HyDABs) based DC Transformer (DCT). This configuration of DCT is characterized with two types of isolated dc-dc converter, phase-shifted DAB (PSDAB) and series-resonant DAB (SRDAB). To achieve high reliability of SRDABs, several controllable PSDABs are connected with SRDABs in parallel. Moreover, the redundant PSDABs are operated in a flexible and controllable power mode under the normal conditions. Meanwhile, they share partial power with parallel SRDABS. If the HB converters in SRDABs are blocked due to inner faults, such as over-current, over-temperature, over-voltage and so on, the redundant PSDABs are employed to bear the whole power. Due to the hot standby method, there is no excessive voltage shock and current impact during the removal of the faulty SRDABs. The feasibility of proposed redundant design and control strategy is validated by the computer simulations on a 2250V/750V HyDABs-DCT.
机译:在本文中,提出了一种热备冗余设计及其控制策略,用于混合双极有源网桥(HydAbs)的直流变压器(DCT)。 DCT的这种配置具有两种类型的隔离DC-DC转换器,相移DAB(PSDAB)和串联共振DAB(SRDAB)。为了实现SRDAB的高可靠性,几个可控PSDABs并联与SRDAbs连接。此外,冗余PSDAB在正常条件下以柔性可控的电力模式操作。同时,它们与并行SRDABs共享部分权力。如果SRDAB中的HB转换器由于内部故障而被阻断,例如过电流,过温,过电压等,则采用冗余PSDAB承载整个功率。由于热备用方法,在移除故障的SRDAB期间没有过度的电压冲击和电流影响。建议的冗余设计和控制策略的可行性由2250V / 750V Hydabs-DCT上的计算机模拟验证。

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