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Control system of a single-phase grid-connected cascaded H-bridge inverter based on energy regulation of DC-link capacitors

机译:基于直流母线电容器能量调节的单相并网H桥逆变器控制系统

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Photovoltaic (PV) systems are frontrunners in ever-growing renewable energy industry due to their clean nature and reliability. In this paper, a control method for a seven level photovoltaic cascaded H-bridge (CHB) is analyzed. Multilevel inverters offer the benefit of improved power quality and lower switching frequency while the nature of CHB makes it a very interesting prospect in PV applications. Independent control of each dc link voltage by means of a conventional MPPT algorithm enables the maximum power extraction from each PV module. The proposed control system regulates the voltage of dc link capacitors to their reference value by controlling the energy stored in them and energy extracted from PV modules. It also considers the effect of power circulating through the inverter to improve the inverter's performance, especially under unbalanced conditions. Behavior of the inverter is analyzed in different testing conditions through simulation.
机译:光伏(PV)系统由于其清洁的特性和可靠性而成为不断发展的可再生能源行业的领先者。在本文中,分析了七级光伏级联H桥(CHB)的控制方法。多电平逆变器具有改善电能质量和降低开关频率的优势,而CHB的性质使其成为光伏应用中非常有趣的前景。通过传统的MPPT算法对每个直流链路电压进行独立控制,可以从每个PV模块中提取最大功率。所提出的控制系统通过控制存储在其中的能量和从PV模块提取的能量,将直流链路电容器的电压调节至参考值。它还考虑了通过逆变器的功率循环的影响,以改善逆变器的性能,尤其是在不平衡条件下。通过仿真分析了逆变器在不同测试条件下的行为。

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