Impact of Choice of Neutral Point Clamped and H-Bridge Multilevel Inverters for PV Systems

A. Rechach, S. Ghoudelbourk, Mihoub Mohamed Larbi
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引用次数: 1

Abstract

The exploitation of solar energy and the universal interest in photovoltaic systems have increased nowadays due to galloping energy consumption and current geopolitical and economic issues. This has led to high technical and economic requirements. The PV system still faces major obstacles such as high cost and low efficiency compared to other renewable technologies. In addition, the photovoltaic system suffers from the rate of undesirable harmonics of the generated power which could alter the quality of energy and the performance requested by users. In order to remedy this problem, the use of the multi-level inverter is in these cases one of the most promising solutions. Indeed, the multi-level technology seems to be well suited to photovoltaic applications to help fill the need for several sources on the DC side of the converter. The technical performance and reliability of the multi-level inverter used to connect the PV modules to the electrical power distribution networks can improve and make profitable the power produced. In this work, we compare two multi-level inverter topologies for PV systems: H-Bridge (HB) and Neutral Point Clamped (NPC). The comparison between these inverters is based on the criteria of spectral quality of the output voltage and the complexity of the power circuits.
中性点箝位和h桥多电平逆变器选择对光伏系统的影响
由于能源消耗的急剧增长以及当前的地缘政治和经济问题,太阳能的开发和对光伏系统的普遍兴趣日益增加。这导致了很高的技术和经济要求。与其他可再生能源技术相比,光伏系统仍然面临着成本高、效率低等主要障碍。此外,光伏系统还受到产生的电能产生的不良谐波率的影响,这可能会改变电能的质量和用户所要求的性能。为了补救这个问题,在这些情况下,多级逆变器的使用是最有前途的解决方案之一。事实上,多层技术似乎非常适合光伏应用,以帮助填补转换器直流侧对多个电源的需求。将光伏组件接入配电网的多级逆变器的技术性能和可靠性可以提高光伏组件的发电效益。在这项工作中,我们比较了光伏系统的两种多级逆变器拓扑:h桥(HB)和中性点箝位(NPC)。这些逆变器之间的比较是基于输出电压的频谱质量和功率电路的复杂性的标准。
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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