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首页> 外文期刊>Industrial Informatics, IEEE Transactions on >Modified Cascaded Multilevel Grid-Connected Inverter to Enhance European Efficiency and Several Extended Topologies
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Modified Cascaded Multilevel Grid-Connected Inverter to Enhance European Efficiency and Several Extended Topologies

机译:改进的级联多级并网逆变器,以提高欧洲效率和几种扩展拓扑

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摘要

This paper proposes a modified cascaded multilevel grid-connected inverter (MCM-GCI) suitable for photovoltaic grid-connected generation system, which considers wide operation range, low grid current total harmonics distortion (THD), and high European efficiency. In the proposed topology, a bidirectional power switch is added to the standard single-phase cascaded multilevel inverter (CMI) to implement the transformation between CMI mode and H-bridge inverter (HBI) mode. An online topology transformation approach of the MCM-GCI is proposed to guarantee the topology modes transformed safely and smoothly. The proposed MCM-GCI operates in CMI mode when the PV arrays’ output voltage and power are low, and transforms into HBI mode when the PV arrays’ output voltage and power are high. Experimental results of five-level MCM-GCI are represented to validate the feasibility of the proposed topology and it is also compared with other three classic grid-connected inverters to highlight its advantages. Furthermore, more structures based on hybrid CMI, which possess the topology transformation ability, are shown to further improve the generation range and obtain a higher efficiency of the system.
机译:本文提出了一种适用于光伏并网发电系统的改进级联多级并网逆变器(MCM-GCI),该逆变器考虑了宽范围的运行范围,低的电网电流总谐波失真(THD)和高的欧洲效率。在提出的拓扑中,双向电源开关被添加到标准单相级联多电平逆变器(CMI)中,以实现CMI模式和H桥逆变器(HBI)模式之间的转换。提出了一种MCM-GCI在线拓扑转换方法,以保证拓扑模式安全,平稳地转换。当光伏阵列的输出电压和功率较低时,建议的MCM-GCI将以CMI模式运行,而当光伏阵列的输出电压和功率较高时,将转换为HBI模式。给出了五级MCM-GCI的实验结果,以验证所提出拓扑的可行性,并将其与其他三台经典并网逆变器进行比较,以突出其优势。此外,显示出更多具有混合拓扑结构的基于混合CMI的结构,可以进一步提高生成范围并获得更高的系统效率。

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