Three-level NPC inverter with novel voltage equalization for PV grid interface suitable for partially shaded conditions

T. Naik, R. Wandhare, V. Agarwal
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引用次数: 14

Abstract

In a conventional grid connection of Photovoltaic (PV) system, a number of PV modules are connected in series and integrated to grid through a conventional two level inverter. Due to the impact of partial shading and module mismatch, such systems have a much lower yield compared to their maximum potential. To address this problem, direct connection of PV source to a three-level diode clamped inverter is considered in this paper, resulting in a single stage power conversion. A novel auxiliary converter is proposed that allows the two split halves of the PV source to be directly connected to the two dc-link capacitors, with each half operating at it's respective Maximum Power Point (MPP). This auxiliary converter can be rated for less power converter compare to the inverter capacity. The unequal MPP voltage of these split PV panels may cause detrimental effect on output current of inverter. To address this power quality issue, a modified switching algorithm is discussed to achieve voltage equalization across the split DC-Links of the multilevel inverter. Though the case of a split PV source (with two halves) has been considered, the proposed scheme is equally valid for a PV array split into more than two parts that may be suitable for a higher level Neutral Point Clamped (NPC) inverter. The proposed auxiliary converter and algorithm are evaluated and verified by simulation in MATLAB-Simulink.
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具有新颖电压均衡的三电平NPC逆变器,适用于部分遮阳条件下的光伏并网接口
在传统的光伏并网系统中,多个光伏组件通过传统的两电平逆变器串联并网。由于部分遮阳和模块不匹配的影响,这种系统的产量远低于其最大潜力。为了解决这一问题,本文考虑将光伏电源直接连接到三电平二极管箝位逆变器,从而实现单级功率转换。提出了一种新的辅助转换器,允许PV源的两个分裂部分直接连接到两个直流链路电容器,每个一半在其各自的最大功率点(MPP)工作。这种辅助变流器的额定功率可以比变流器的逆变器容量小。这些分体式光伏板的MPP电压不均匀,会对逆变器的输出电流产生不利影响。为了解决这一电能质量问题,讨论了一种改进的开关算法,以实现多电平逆变器的分路直流链路上的电压均衡。虽然已经考虑了分裂PV源(两半)的情况,但所提出的方案同样适用于分裂成两个以上部分的PV阵列,这可能适用于更高级别的中性点箝位(NPC)逆变器。在MATLAB-Simulink中对所提出的辅助转换器和算法进行了仿真评估和验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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