A Novel DC/DC Three Port Converter with Fault-Tolerant Ability

M. Alam, H. Aljarajreh, Majid Farhangi, Lu Dylan D.-C., Y. Siwakoti
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引用次数: 2

Abstract

This article proposes a novel three-port converter with a fault-tolerant (FT) capability to reconFigure automatically under different switching fault conditions, i.e., open circuit fault (OCF) or short circuit fault (SCF) of the power transistors, and to continue achieving different control objectives such as effective battery charging, maximum power point tracking (MPPT) and output voltage regulation. The proposed fault-tolerant design with a one-level redundancy structure enhances the reliability of traditional three port converters (TPCs), but it also addresses the component failure while different modes of operations using fewer components by incorporating dual-input single-inductor structure into the converter design. Simulation results are presented to explain the performance of the proposed converter during different fault conditions and the reconfiguration mechanism during these conditions.
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一种具有容错能力的新型DC/DC三端口变换器
本文提出了一种新颖的三端口变换器,具有容错能力,可以在不同的开关故障条件下自动重新配置,即功率晶体管的开路故障(OCF)或短路故障(SCF),并继续实现不同的控制目标,如有效的电池充电,最大功率点跟踪(MPPT)和输出电压调节。本文提出的一级冗余结构容错设计提高了传统三端口变换器的可靠性,但也通过将双输入单电感结构引入变换器设计中,解决了在使用较少元件的不同工作模式下元件失效的问题。仿真结果解释了该变换器在不同故障条件下的性能,以及在这些故障条件下的重构机制。
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