Novel High-Voltage-Gain High-Frequency Nonisolated Three-port DC-DC Converter with Zero Input Current Ripple and Soft Switching Capability

Zahra Saadatizadeh, Pedram Chavoshipour Heris, A. Mantooth
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Abstract

In this paper, a novel structure of three-port with zero voltage switching (ZVS) dc-dc converter is proposed. Three-port dc-dc converters are widely applicable in hybrid energy generating systems to provide substantial power to sensitive loads. One of the ports of the proposed converter is interfaced with a storage such as a battery which makes the converter capable of supplying the load even if the main renewable energy supply of the proposed converter (e.g. photovoltaic cells) is not able to generate power. The proposed converter operates in two operations of charging the battery port and the mode when the battery discharges to the load. In addition, it has ZVS operation for all utilized switches and can eliminate the input current ripple. The ZVS of the switches is provided by the leakage inductances of the used coupled inductors. Also, the voltage control of each of the terminals is achieved by three active switches. In this paper, the proposed topology is analyzed theoretically for all operating modes, also, the voltage and current equations of all components are calculated. Furthermore, the required soft switching and zero input currents ripple conditions are analyzed. Finally, the accuracy performance of the proposed converter and the analytical results is verified by the PSCAD/EMTDC simulation and experimental results for 1MHz switching frequency operation. Applying high frequency and using GaN Fets leads to achieve a more compact prototype of the proposed topology.
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具有零输入纹波和软开关能力的新型高压增益高频非隔离三端口DC-DC变换器
提出了一种结构新颖的三端口零电压开关dc-dc变换器。三端口dc-dc变换器广泛应用于混合能源发电系统,为敏感负载提供大量电力。所述转换器的其中一个端口与诸如电池之类的存储器连接,该存储器使所述转换器能够供应负载,即使所述转换器的主要可再生能源供应(例如光伏电池)不能产生电力。所提出的变换器工作在电池端口充电和电池向负载放电时的模式两种操作下。此外,它对所有使用的开关都具有ZVS操作,并且可以消除输入电流纹波。开关的ZVS由所使用的耦合电感的漏电感提供。此外,每个端子的电压控制是由三个有源开关实现的。本文对所提出的拓扑结构在各种工作模式下进行了理论分析,并计算了各元件的电压和电流方程。此外,还分析了所需的软开关和零输入纹波条件。最后,通过PSCAD/EMTDC仿真和1MHz开关频率工作的实验结果验证了所提变换器的精度性能和分析结果。应用高频和使用氮化镓场效应管导致实现更紧凑的原型所提出的拓扑结构。
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High Temperature Robustness of Enhancement-Mode p-GaN-Gated AlGaN/GaN HEMT Technology Thermal Design and Experimental Evaluation of a 1kV, 500A T-Type Modular DC Circuit Breaker A 5 to 50 V, −25 to 225 °C, 0.065%/°C GaN MIS-HEMT Monolithic Compact 2T Voltage Reference Design of High Power Converter with Single Low Ron Discrete SiC Device Novel High-Voltage-Gain High-Frequency Nonisolated Three-port DC-DC Converter with Zero Input Current Ripple and Soft Switching Capability
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