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Self-Current Sharing in Dual-Transformer-Based Triple-Port Active Bridge DC–DC Converter With Reduced Device Count

机译:基于双变压器的三端口有源桥DC-DC转换器的自电流共用,减少了装置数

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摘要

A self-current balancing structure of the dual-transformer-based triple-port active bridge (DT-TAB) converter with the reduced component count is proposed in this article for future sustainable energy system applications. The proposed topology inherits good characteristics of the conventional triple-port active bridge (TAB) with even power sharing in an open loop as a newly added function. It can achieve high power density over the existing TAB converters that possess current-balancing function because the need for an auxiliary magnetic circuit or sophisticated control scheme in equalizing the shared power is eliminated. Besides, the demagnetization and magnetic short-circuit problems associated with the conventional TAB converters that are been eradicated, decoupled power flow management is achieved at all conditions. Moreover, the phase shift between the input H bridges gives an additional control degree of freedom that permits the control of the output power or offers independent control of voltage magnitude during the reverse power flow, thereby extending the system-operating range. The proposed DT-TAB converter has been adapted for the two-port operation. All the power switches achieved zero-voltage-switching turn-on. Finally, the robust operation performances of the proposed DT-TAB converter have been verified by the laboratory prototype assembled and tested up to 1 kW. The experimental results presented at the end are the proof-of-concept.
机译:在本文中提出了一种具有减小的组件计数的双变压器的三端口有源桥(DT-TAP)转换器的自电流平衡结构,以实现未来的可持续能源系统应用。所提出的拓扑继承了传统的三端口活动桥(TAB)的良好特性,即使是开环中的电源共享为新添加的功能。它可以在具有电流平衡功能的现有选项卡转换器上实现高功率密度,因为消除了均衡辅助磁路或复杂控制方案的均衡。此外,在所有条件下,实现了与传统的突片转换器相关的去磁和磁性短路问题。此外,输入H桥之间的相移给出了允许控制输出功率的额外控制自由度,或者在反向电流期间提供独立控制电压,从而延长系统操作范围。所提出的DT-Tab转换器已经适用于双端口操作。所有电源开关都实现了零电压开启开启。最后,所提出的DT-TAB转换器的鲁棒操作性能已经通过组装的实验室原型验证并测试高达1kW。结束时显示的实验结果是概念验证。

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