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Modelling, analysis and control design of a two-stage photovoltaic generation system

机译:两阶段光伏发电系统的建模,分析和控制设计

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摘要

Photovoltaic (PV) generation systems with two-stage topology are recently emerged due to its flexibility of installation. However, most studies on dynamic stability of the PV generation system are based either on the first DC/DC stage or the second DC/AC stage in previous literature. A system-level modelling and stability has not been reported significantly, which is a crucial issue for the design of the PV system controllers. In this study, an integrated small-signal model for a two-stage PV generation system is derived to investigate the system stability and sensitivity. The proposed model takes into account the dynamics of the DC-link capacitor that was generally regarded as an ideal constant voltage source in previous researches. A v2 feedback based DC-link voltage control scheme is presented to address the non-linear relationship between capacitor energy and its voltage and thus a high performance DC-link voltage regulation is achieved. Hardware-in-loop tests using real time digital simulator are presented to validate the feasibility of the proposed method.
机译:具有两级拓扑结构的光伏发电系统由于其安装的灵活性而最近出现。但是,大多数有关光伏发电系统动态稳定性的研究都是基于先前文献中的第一个DC / DC阶段或第二个DC / AC阶段。尚未大量报道系统级建模和稳定性,这是设计光伏系统控制器的关键问题。在这项研究中,导出了用于两阶段光伏发电系统的集成小信号模型,以研究系统的稳定性和灵敏度。所提出的模型考虑了以前研究中通常被视为理想恒压源的直流环节电容器的动态特性。提出了一种基于v2反馈的直流母线电压控制方案,以解决电容器能量与其电压之间的非线性关系,从而实现了高性能的直流母线电压调节。提出了使用实时数字仿真器的硬件在环测试,以验证该方法的可行性。

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