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Magnetic-Coupling Current-Balancing Cells Based Input-Parallel Output-Parallel LLC Resonant Converter Modules for High-Frequency Isolation of DC Distribution Systems

机译:基于磁耦合电流平衡单元的输入-输出并联-谐振转换器模块,用于直流配电系统的高频隔离

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摘要

The input-parallel output-parallel (IPOP) dc-dc converters are suitable for low-voltage and high-current applications, especially using high-frequency isolation instead of traditional line-frequency transformer for ac-dc converters in dc distribution. Compared to the existing closed-loop control for IPOP dc-dc converters, the magnetic-coupling current-balancing (MC-CB) cells based IPOP LLC resonant converter modules are proposed in this paper, which can realize the IPOP system work under open-loop operating condition naturally. The LLC modules can be used as a high-frequency isolation dc transformer operating under the quasi-resonant mode, which can achieve zero-voltage switching (ZVS) for inverter side and zero-current switching (ZCS) for rectifier side ensuring high power density and high efficiency. The proposed MC-CB cells for IPOP LLC resonant converter modules can adaptively ensure both the input-current sharing (ICS) and the output-current sharing (OCS) among constituent modules to make the IPOP system operate stably. Additionally, the steady-state and dynamic-state current-sharing performance of MC-CB cells for the IPOP converter system are analyzed based on a magnetic model. In the end, a hardware prototype has been designed and tested. The experimental results have verified the validity and performance of the proposed MC-CB cells for the IPOP LLC resonant converter modules.
机译:输入并行输出并行(IPOP)dc-dc转换器适用于低压和大电流应用,尤其是在直流配电中,使用高频隔离代替传统的行频变压器用于ac-dc转换器。与现有的用于IPOP dc-dc转换器的闭环控制相比,本文提出了基于磁耦合电流平衡(MC-CB)单元的IPOP LLC谐振转换器模块,可以实现IPOP系统在开路下工作。自然地循环运行条件。 LLC模块可用作在准谐振模式下运行的高频隔离直流变压器,可实现逆变器侧的零电压开关(ZVS)和整流器侧的零电流开关(ZCS),从而确保高功率密度和高效率。提出的用于IPOP LLC谐振转换器模块的MC-CB单元可以自适应地确保组成模块之间的输入电流共享(ICS)和输出电流共享(OCS),以使IPOP系统稳定运行。此外,基于磁模型分析了用于IPOP转换器系统的MC-CB电池的稳态和动态状态均流性能。最后,设计并测试了硬件原型。实验结果已经验证了用于IPOP LLC谐振转换器模块的拟议MC-CB电池的有效性和性能。

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