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An Effective Control Method for Three-Phase Quasi-Z-Source Cascaded Multilevel Inverter Based Grid-Tie Photovoltaic Power System

机译:基于三相准Z源级联多电平逆变器的并网光伏发电系统的有效控制方法

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摘要

The quasi-Z-source cascaded multilevel inverter (qZS-CMI) presented many advantages over conventional CMI when applied in photovoltaic (PV) power systems. For example, qZS-CMI provides the balanced dc-link voltage and voltage boost ability, saves one-third modules, etc. However, current research studies only disclosed control of single-phase qZS-CMI-based PV power systems, and there was no literature related to control of three-phase qZS-CMI-based PV power systems. In this paper, for the first time, three-phase qZS-CMI's control is proposed and demonstrated for application to PV power systems. The models of PV-panel-fed qZS H-bridge module and qZS-CMI-based PV power system are built to accurately design control algorithms for each module and the whole system. The proposed control method includes the distributed maximum power point tracking for each module, dc-link peak voltage balance control for all modules, and grid-tie control for the whole system; moreover, a new multilevel space vector modulation method is proposed for the three-phase qZS-CMI. Simulation and experimental results on a test bench with a three-phase seven-level qZS-CMI-based PV power system verify the proposed control and modulation methods.
机译:当应用于光伏(PV)电力系统中时,准Z源级联多电平逆变器(qZS-CMI)具有许多优于常规CMI的优势。例如,qZS-CMI提供了平衡的直流链路电压和升压能力,节省了三分之一的模块,等等。但是,当前的研究仅公开了基于qZS-CMI的单相光伏发电系统的控制。没有文献涉及基于qZS-CMI的三相光伏发电系统的控制。本文首次提出了三相qZS-CMI的控制方法,并演示了其在光伏发电系统中的应用。构建了由光伏面板供电的qZS H桥模块和基于qZS-CMI的PV电力系统的模型,以针对每个模块和整个系统精确设计控制算法。所提出的控制方法包括每个模块的分布式最大功率点跟踪,所有模块的直流母线峰值电压平衡控制以及整个系统的并网控制。此外,针对三相qZS-CMI,提出了一种新的多级空间矢量调制方法。在基于三相七级qZS-CMI的光伏发电系统的试验台上的仿真和实验结果验证了所提出的控制和调制方法。

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