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Output-Series Connected Dual Active Bridge Converters for Zero-Voltage Switching Throughout Full Load Range by Employing Auxiliary LC Networks

机译:通过使用辅助 LC 网络在全负载范围内实现零电压切换的输出系列连接双有源桥式转换器

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This paper presents an output-series connected dual active bridge (DAB) converter for efficient zero-voltage switching (ZVS) by employing dual auxiliary LC networks in high-output voltage applications. The dual auxiliary LC networks are integrated into the converter for ZVS throughout full load range. The gate signals of the output side switches can control the current in the LC networks. By analyzing the working modes of the converter, the modulation trajectory is designed in terms of the boundaries of the ZVS range. The conduction loss caused by the auxiliary LC networks is adjusted according to the voltage and load power. The modulation scheme can achieve seamless transition between the adjacent working modes. The conduction loss of the proposed converter is compared with the conventional output-series DAB converter. Although the conduction loss is increased under light loads, all the switches can achieve ZVS. The reduced switching loss can improve the overall efficiency. Finally, a 1.3 kW experimental prototype was built to verify the effectiveness of the proposed converter and the modulation scheme, which demonstrates the ZVS performance and efficiency improvement.
机译:本文提出了一种输出串联双有源桥(DAB)转换器,该转换器通过在高输出电压应用中采用双辅助LC网络来实现有效的零电压开关(ZVS)。在整个满负载范围内,双辅助LC网络都集成到ZVS转换器中。输出侧开关的栅极信号可以控制LC网络中的电流。通过分析转换器的工作模式,根据ZVS范围的边界来设计调制轨迹。由辅助LC网络引起的传导损耗可根据电压和负载功率进行调整。该调制方案可以实现相邻工作模式之间的无缝过渡。将拟议的转换器的传导损耗与传统的输出系列DAB转换器进行了比较。尽管在轻负载下传导损耗会增加,但所有开关都可以实现ZVS。降低的开关损耗可以提高整体效率。最后,构建了一个1.3 kW的实验原型,以验证所提出的转换器和调制方案的有效性,这证明了ZVS性能和效率的提高。

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