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Fault Diagnosis and Tolerant Control of Dual-Active-Bridge Converter With Triple-Phase Shift Control for Bidirectional EV Charging Systems

机译:双相移位控制双相桥接器对双相移电的故障诊断和耐受控制

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摘要

Efficiency and reliability are essential for isolated bidirectional dc-dc converters in electric vehicle (EV) battery charging systems. As one promising power interface between energy storage components and power bus, dual-active-bridge (DAB) dc-dc converters have gained wide applications due to the advantages of galvanic isolation, symmetric circuit structure, high power density, and easy control implementation. In this article, based on the triple-phase shift (TPS) control, a fast and effective fault diagnosis strategy is proposed for DAB converters to improve both the power conversion efficiency and reliability. First, the operation principle of DAB converters with TPS control is presented. Then, a fast and effective open-circuit fault (OCF) analysis under different operation modes of TPS control is presented. Based on the resonant phenomenon during the fault conditions, an OCF diagnosis strategy that uses midpoint voltage as diagnosis criteria is proposed for DAB converters under the advanced TPS control to identify the faulty devices quickly and avoid the system collapse. After the failure switches are located, fault-tolerant operation is adopted to maintain the power transmission ability of DAB converters and ensure safe operation. The experimental results are provided to validate the correctness and effectiveness of the OCF performance analysis, fault diagnosis, and tolerant method.
机译:电动车辆(EV)电池充电系统中的隔离双向DC-DC转换器是必需的效率和可靠性。作为能量存储元件和电源总线之间的一个有前途的电源接口,双极桥(DAB)DC-DC转换器由于电流隔离,对称电路结构,高功率密度和易于控制实现而获得了广泛的应用。在本文中,基于三相移位(TPS)控制,提出了一种快速有效的故障诊断策略,用于DAB转换器,以提高电力转换效率和可靠性。首先,提出了具有TPS控制的DAB转换器的操作原理。然后,介绍了在不同操作模式下的快速有效的开路故障(OCF)分析。基于故障条件期间的谐振现象,在高级TPS控制下为DAB转换器提出了使用中点电压作为诊断标准的OCF诊断策略,以快速识别故障设备并避免系统崩溃。在故障开关定位后,采用容错操作以维持DAB转换器的电力传输能力,并确保安全操作。提供实验结果以验证OCF性能分析,故障诊断和耐受方法的正确性和有效性。

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