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Isolated Single-Input Dual-Output LLC Converter for a Wide Range of Voltage Gain using Mode Transition

机译:隔离单输入双输出LLC转换器,使用模式转换的宽范围电压增益

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In this study, an LLC converter that can achieve a wide range of voltage gain and high efficiency for two loads is proposed. The efficiency of the proposed LLC converter is found to be greater than that of the conventional full-bridge LLC converter. Depending on the ON/OFF state of the five primary switches, the proposed converter offers five modes of operation. These modes enable a squeezed switching frequency span that is close to the resonance frequency. In all operation modes, one load is controlled by the switching frequency, while the other is controlled by the switching frequency and phase-shift angle. The proposed control method provides a wide operating range and seamless transition between different modes. Furthermore, the mode transitions are performed based on the relationship between the switching frequency and phase-shift angle. First, the theoretical characteristics of the proposed converter are analyzed. Next, the gain characteristics of each operation mode and the mode transition method are described. The prototype is designed to convert a constant input voltage of 360V to output voltages ranging from 80-420V and 36-48V. The experimental results confirmed that steady-state waveforms can be achieved in the multiple proposed modes of operation and voltage gains ranging from less than 0.5 to more than 1.0. Moreover, seamless mode transitions can be achieved without large deviations between the outputs. Finally, the efficiency of the proposed converter is evaluated in comparison to that of a conventional converter. The proposed converter achieved high-efficiency operations in the CC2 region of the battery compared to the conventional converter.
机译:在本研究中,提出了一种可以实现多电压增益和两个负载效率的LLC转换器。发现所提出的LLC转换器的效率大于传统全桥LLC转换器的效率。根据五个主交换机的开/关状态,所提出的转换器提供了五种操作模式。这些模式使得挤压开关频率跨度接近谐振频率。在所有操作模式中,一个负载由开关频率控制,而另一个负载由切换频率和相移角控制。所提出的控制方法提供了宽的操作范围和不同模式之间的无缝过渡。此外,基于切换频率和相移角之间的关系来执行模式转换。首先,分析了所提出的转换器的理论特征。接下来,描述每个操作模式和模式转换方法的增益特性。原型设计用于将360V的恒定输入电压转换为输出电压,范围为80-420V和36-48V。实验结果证实,可以在多个所提出的操作模式下实现稳态波形,电压增益范围小于0.5至1.0多。此外,可以实现无缝模式转换,而不会在输出之间偏差。最后,与传统转换器的相比,评估所提出的转换器的效率。与传统转换器相比,所提出的转换器在电池的CC2区域中实现了高效操作。

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