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Modelling and controller design of quasi-Z-source cascaded multilevel inverter-based three-phase grid-tie photovoltaic power system

机译:基于准Z源级联多电平逆变器的三相并网光伏发电系统建模与控制器设计

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摘要

Quasi-Z source cascaded multilevel inverter (qZS-CMI) is an emerging topology applied to photovoltaic (PV) power system. It can overcome disadvantages of conventional CMI-based PV power system, because of achieving the balanced dc-link voltage through using its boost ability, and saving one-third modules. At present, there was not literature to disclose the modelling and controller design for qZS-CMI-based three-phase grid-tie PV power system. In this study, a control scheme for three-phase qZS-CMI-based grid-tie PV power system is proposed, where distributed maximum power point tracking (MPPT) and constant dc-link peak voltage are achieved for all qZS H-bridge inverter (qZS-HBI)-based PV modules, with grid-injected power in unity power factor. The detailed controller parameter design is demonstrated by using Bode plots and the built models of qZS-HBI-based PV module and whole system. A test bench of 7-level three-phase qZS-CMI-based PV power system is built. Simulation and experimental results validate the proposed control scheme and design method.
机译:准Z源级联多电平逆变器(qZS-CMI)是一种应用于光伏(PV)电力系统的新兴拓扑。它可以克服传统的基于CMI的光伏发电系统的缺点,因为通过利用其升压能力实现了平衡的直流链路电压,并节省了三分之一的模块。目前,没有文献公开基于qZS-CMI的三相并网光伏发电系统的建模和控制器设计。本研究提出了一种基于三相qZS-CMI的并网光伏发电系统的控制方案,该方案可为所有qZS H桥逆变器实现分布式最大功率点跟踪(MPPT)和恒定的直流母线峰值电压(qZS-HBI)型光伏组件,并网功率为单位功率因数。通过使用波特图以及基于qZS-HBI的光伏模块和整个系统的构建模型,演示了详细的控制器参数设计。建立了基于qZS-CMI的7级三相光伏发电系统测试平台。仿真和实验结果验证了所提出的控制方案和设计方法。

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