Switching Transition Analysis and Optimization for Bidirectional CLLC Resonant DC Transformer

被引:71
作者
Cao, Yuliang [1 ]
Ngo, Minh [1 ]
Burgos, Rolando [1 ]
Ismail, Agirman [2 ]
Dong, Dong [1 ]
机构
[1] Virginia Polytech Inst & State Univ, Blacksburg, VA 24061 USA
[2] Carrier Power Elect Grp, Bloomfield, CT 06002 USA
关键词
Zero voltage switching; Modulation; Transformers; Capacitance; Switches; Discharges (electric); Voltage; Axis and center symmetric (ACS) method; CLLC resonant converter; dc transformer (DCX); dual-active synchronization (DAS); switching transitions; zero-voltage switching (ZVS); SOLID-STATE TRANSFORMER; CONVERTER; POWER; EFFICIENCY; MODULATION; SCHEME;
D O I
10.1109/TPEL.2021.3125265
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The demand for an isolated bidirectional dc transformer (DCX) is driven by the fast development of the energy storage system, data center power supply, and transportation electrification. Due to zero-voltage switching (ZVS) and small rms current, the open-loop CLLC resonant converter operating at the resonant frequency is considered a promising candidate for DCX with a constant voltage transfer ratio. To solve unsmooth bidirectional power flow and current distortion in the traditional CLLC-DCX with synchronization rectification (SR) modulation, a dual-activesynchronization (DAS) modulation is adopted with identical driving signals on both sides. First, the switching transition of this modulation is fully analyzed with the consideration of large device output capacitances. After comparison of different transitions, a so-called "Sync-ZVS" transition is found more desirable with ZVS, no deadtime conduction loss, and almost load-independent voltage gain. In order to achieve this switching transition, an "Axis and Center Symmetric" (ACS) method is proposed. Based on this method, an overall design procedure of CLLC-DCX withDASmodulation is also proposed. Finally, the "Sync-ZVS" transition and the proposed "ACS" method are both verified by three 750-V/375-V or 750-V/750-V 18-kW 500-kHz prototypes with a 98.7% peak efficiency. This article is accompanied by one video demonstrating the load-changing test.
引用
收藏
页码:3786 / 3800
页数:15
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