考虑死区效应的DBSRC最小电流优化

Jiawen Yang, Yu Zhang, Xinmi Wu
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引用次数: 0

摘要

在工作在高开关频率下的双桥串联谐振变换器(DBSRC)中,死区效应成为一个严重的问题。当采用最小电流轨迹(MCT)方法时,由于死区时间的影响,电感电流不能达到最小,导致软开关的范围减小。考虑到死区时间的影响,本文首先基于基谐波近似(FHA)方法对传输功率和软开关特性进行了理论分析。然后,提出了考虑死区时间的最小电流轨迹法(MCT-d),通过补偿死区时间实现电感电流最小。同时,该方法还可以扩展软开关的范围。最后,实验结果验证了理论分析和变换器效率的提高。
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Minimum Current Optimization of DBSRC Considering Dead-time Effect
In the dual-bridge series resonant converter (DBSRC) working at a high switching frequency, the dead-time effect becomes a serious issue. When the minimum current trajectory (MCT) method is applied, the inductor current cannot be minimized due to the dead-time effect, and the range of the soft switching is reduced. Considering the dead-time, this paper firstly performs a theoretical analysis of the transmission power and soft-switching characteristics based on the fundamental harmonic approximation (FHA) approach. Then, a minimum current trajectory method considering dead-time (MCT-d) is proposed to achieve minimum inductor current by compensating the dead-time. Meanwhile, the method can extend the soft-switching range as well. Finally, the experimental results validate the theoretical analysis and the improvement of the converter efficiency.
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CiteScore
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8
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