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Performance evaluation of a 3-level ANPC photovoltaic grid-connected inverter with 650V SiC devices and optimized PWM

机译:具有650V SiC器件和优化PWM的3级ANPC光伏并网逆变器的性能评估

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摘要

Photovoltaic (PV) energy conversion has been on the spotlight of scientific research on renewable energy for several years. In recent years the bulk of the research on PV has focused on transformerless grid-connected inverters, more efficient than traditional line transformer-based ones, but more critical from a power quality point of view, especially in terms of ground leakage current. Neutral point clamped (NPC) inverters have recently gained interest due to their intrinsically low ground leakage current and high efficiency, especially for MOSFET-based topologies. This paper presents an active NPC (ANPC) topology equipped with 650 V SiC MOSFETs, with a new modulation strategy that allows to reap the benefits of the wide-bandgap devices. An efficiency improvement is obtained due to the parallel operation of two devices during the freewheeling intervals. Simulations and experimental results confirm the effectiveness of the proposed converter.
机译:光伏(PV)能量转换已成为可再生能源科学研究的热点。近年来,对PV的大部分研究都集中在无变压器的并网逆变器上,它比传统的基于线路变压器的逆变器效率更高,但从电能质量的角度来看,尤为重要,尤其是在漏地电流方面。中性点钳位(NPC)逆变器由于其固有的低地漏电流和高效率而引起了人们的关注,特别是对于基于MOSFET的拓扑而言。本文介绍了一种配有650 V SiC MOSFET的有源NPC(ANPC)拓扑,它采用了一种新的调制策略,可以充分利用宽带隙器件的优势。由于在续流间隔期间两个设备的并行操作,因此可以提高效率。仿真和实验结果证实了该转换器的有效性。

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