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Output Capacitor Current Reduction with T-type Dual Active Bridge Converter for Wide Output Voltage Condition

机译:T型双有源桥式转换器可在宽输出电压条件下降低输出电容器电流

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This paper presents a capacitor ripple current evaluation of a bidirectional isolated DC/DC converter with a one-leg T-type dual active bridge (DAB) converter for energy storage system applications. The DAB converter transfers the power with the high efficiency when the input and output voltage ratio is close to turn-ratio of the high frequency transformer. However, the other condition such as the output voltage fluctuation decays the performance of the DAB converter. However, the conversion efficiency decreases due to increasing the inductor rms current, and the limitation of the Zero Voltage Switching (ZVS) range. Moreover, the DC-bus capacitor rms current also increases due to increasing the inductor rms current. In this case, the capacitor will be bulky because a high allowable ripple current devices or a lot of parallel connection of the capacitor is required in order to satisfy the current rating for each capacitor. In this paper, the capacitor rms current reduction by the one-leg T-type DAB converter which has the half and full bridge operation mode is revealed. This converter generates the two-level transformer voltage by each operation modes, and the operating condition of the DAB converter is shifted by widely output voltage condition in order to reduce the inductor and the capacitor rms current. As the simulation result, the capacitor rms current was reduced by 51% when the output voltage is decreased by 50% from the nominal voltage condition. Finally, the experimental results are demonstrated including the inductor and capacitor current reduction by one-leg T-type DAB converter. From the experimental result, the capacitor rms current was reduced by 60% when the output voltage becomes half of the nominal value.
机译:本文介绍了一种用于储能系统应用的带有单脚T型双有源桥(DAB)转换器的双向隔离式DC / DC转换器的电容器纹波电流评估。当输入和输出电压比接近高频变压器的匝数比时,DAB转换器高效传输功率。但是,其他条件(例如输出电压波动)会使DAB转换器的性能下降。但是,由于电感有效值电流的增加以及零电压开关(ZVS)范围的限制,转换效率会降低。此外,由于增加了电感的均方根电流,DC总线电容器的均方根电流也增加了。在这种情况下,电容器将是笨重的,因为需要高允许纹波电流器件或电容器的大量并联连接才能满足每个电容器的额定电流。本文揭示了采用半桥和全桥工作模式的单腿T型DAB转换器可降低电容器的均方根电流。该转换器通过每种工作模式生成两级变压器电压,并且DAB转换器的工作条件因宽泛的输出电压条件而发生偏移,以减小电感器和电容器的均方根电流。作为仿真结果,当输出电压从标称电压条件降低50%时,电容器rms电流降低51%。最后,通过单脚T型DAB转换器演示了降低电感器和电容器电流的实验结果。根据实验结果,当输出电压变为标称值的一半时,电容器的均方根电流降低了60%。

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