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A novel light load performance enhanced variable-switching-frequency and hybrid single-dual-phase-shift control for single-stage dual-active-bridge based AC/DC converter

机译:一种新型光负荷性能增强的可变开关频率和混合单双相移控制,用于基于单级双极桥的AC / DC转换器

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Full-bridge power-factor-correction (PFC) front-end + dual-active-bridge (DAB) AC/DC topology is widely used in industry, e.g., electrical vehicle on-board charger. Such two-stage topology limits the system efficiency, and the bulky DC link bus capacitor makes the system power density relatively low. Compared to the two-stage design, the single-stage design, unfolding bridge + DAB, eliminates the bulky DC link bus capacitor and operates the front-end with only 60Hz switching frequency, thereby has the potential to increase the system power density and efficiency. A novel variable-switching-frequency and hybrid single-dual-phase-shift (VSF-SDPS) control strategy is proposed and analyzed for the DAB based single-stage topology. The proposed VSF-SDPF control consists of two phase shifts to guarantee Zero-Voltage-Switching (ZVS) over the full range of the AC line voltage, and frequency modulation to achieve boost PFC. The conventional front-end PFC is simplified to an unfolding bridge by changing DAB control strategy to achieve PFC and ZVS at the same time. Besides, a special ZVS boundary is utilized to solve the grid current distortion problem when the switching frequency saturated, which is especially severe at light load condition. Simulation results and experimental validation are presented under 50Vrms AC line voltage and 200V DC battery voltage test condition.
机译:全桥电源系数校正(PFC)前端+双极桥(DAB)AC / DC拓扑广泛用于工业,例如电动车载充电器。这种两级拓扑限制了系统效率,庞大的直流链路总线电容器使系统功率密度相对较低。与两级设计相比,单级设计展开桥+ DAB消除了笨重的直流链路总线电容,并使用60Hz开关频率操作前端,从而有可能提高系统功率密度和效率。提出了一种新的可变开关频率和混合单双相移(VSF-SDPS)控制策略,并针对基于DAB的单阶段拓扑分析。所提出的VSF-SDPF控制包括两相移位,以保证在AC线电压的全系列上的零电压切换(ZVS),以及实现升压PFC的频率调制。传统的前端PFC通过改变DAB控制策略同时实现PFC和ZVS来简化到展开桥梁。此外,利用特殊的ZVS边界来解决电网电流失真问题,当切换频率饱和时,在轻负载条件下特别严重。仿真结果和实验验证在50VRMS交流电压电压和200V直流电池电压测试条件下提出。

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