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Design and optimization of 99 CEC efficiency soft-switching photovoltaic inverter

机译:99%CEC效率的软开关光伏逆变器的设计与优化

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Driven by worldwide demands for renewable energy source, photovoltaic (PV) inverters, which are the most important part for energy conversion, have seen a considerable amount of innovations in recent years. The trends for PV inverters are toward high efficiency, high reliability, low ground leakage current, low-output ac-current distortion, and reactive power capability. This paper provides an efficiency optimized design of an Auxiliary Resonant Snubber with Coupled-Magnetic Reset Zero-voltage switching (ZVS) inverter for PV application. The main device is Power MOSFETs, which have low conduction loss and could achieve ZVS in all load condition. The auxiliary devices are low current, low cost IGBTs and Diodes, which could achieve zero-current switching (ZCS). To achieve high efficiency, resonant circuit is analyzed to optimally design the resonant components, which is based on the guarantee of full range ZVS, gating delay-time design, and lower power loss in auxiliary circuit. The power loss model is also analyzed to select suitable power device and further improve the efficiency. At last, experiment results of a 5kW single phase inverter in PV system was presented, which has more than 99% CEC efficiency and work in full load condition without cooling fan. Besides, reactive power capability is also demonstrated.
机译:在全球对可再生能源的需求推动下,光伏(PV)逆变器是能源转换的最重要组成部分,近年来已进行了大量创新。光伏逆变器的趋势是朝着高效率,高可靠性,低接地泄漏电流,低输出交流电流失真和无功功率能力发展。本文针对光伏应用提供了一种具有耦合磁复位零电压开关(ZVS)逆变器的辅助谐振缓冲器的效率优化设计。主要器件是功率MOSFET,它具有低传导损耗,并且在所有负载条件下都可以达到ZVS。辅助设备是低电流,低成本IGBT和二极管,可以实现零电流开关(ZCS)。为了获得高效率,分析了谐振电路,以保证全范围ZVS,选通延迟时间设计和较低的辅助电路功耗为基础,对谐振组件进行最佳设计。还分析了功率损耗模型,以选择合适的功率器件并进一步提高效率。最后,给出了光伏系统中5kW单相逆变器的实验结果,该逆变器具有超过99%的CEC效率,并且可以在没有冷却风扇的全负载条件下工作。此外,还展示了无功功率能力。

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