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An optimization design for 5-kW centralized PV inverter to achieve 99 efficiency

机译:5kW集中式光伏逆变器的优化设计,可实现99%的效率

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In this paper, a 5-kW photovoltaic (PV) inverter with more than 99% peak efficiency is presented. The inverter utilizes two coupled inductors in one resonant pole to ensure the zero-voltage switching (ZVS) for main switches, and zero-current switching (ZCS) for auxiliary switches. Due to the favorable cooling and ease of fabrication characteristics, PCB planar magnetics are employed as the coupled resonant inductors. In addition, super-junction MosFETs with low on-state resistance is selected in order to reduce the inverter conduction loss. The optimization design of planar resonant inductors is described and verified by finite element analysis (FEA) software. During the experiment on the 5-kW inverter prototype, the temperature rise of planar inductors is below 15°C without fan cooling at full load.
机译:本文提出了一种峰值功率超过99%的5kW光伏(PV)逆变器。逆变器在一个谐振极中利用两个耦合的电感器,以确保主开关的零电压开关(ZVS)和辅助开关的零电流开关(ZCS)。由于良好的冷却和易于制造的特性,PCB平面磁被用作耦合谐振电感器。此外,为了降低逆变器的传导损耗,选择了具有低导通电阻的超结MosFET。描述了平面谐振电感器的优化设计,并通过有限元分析(FEA)软件进行了验证。在5 kW逆变器原型的实验过程中,平面电感的温度升高低于15°C,并且在满负荷情况下没有风扇冷却。

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