1φ互连光伏系统的干扰估计预测电流控制器

H. Mohomad, S. Saleh, L. Chang
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引用次数: 1

摘要

本文介绍了一种带有干扰估计器的预测电流控制器的分析、开发和实验性能。所开发的电流控制器设计用于光伏(PV)系统中单相(1φ)电网侧电力电子变换器(PEC)的控制。扰动估计器用于降低控制器对参数变化的敏感性,并抑制网格侧扰动。采用极点放置法对控制器及其干扰估计器进行了设计。以一个5.4 kW的光伏并网系统为实验对象,对所开发的电流控制器在不同输电网功率水平、不同系统参数变化条件下的性能进行了测试。此外,还对用于互联光伏系统的其他控制器进行了测试,以突出所开发的电流控制器的优点。性能和比较结果表明,该系统的响应准确、快速、鲁棒,且对电网侧参数变化和干扰的敏感性可以忽略不计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Disturbance-estimator predictive current controller for 1φ interconnected PV systems
This paper presents the analysis, development, and experimental performance of a predictive current controller that is featured with a disturbance estimator. The developed current controller is designed to operate a single phase (1φ) grid-side power electronic converter (PEC) employed in photovoltaic (PV) systems. The disturbance estimator is used to reduce the controller sensitivity to parameter variations, as well as to reject grid side disturbances. The design of the controller and its disturbance estimator are carried using the pole-placement method. The performance of the developed current controller is experimentally tested for a 5.4 kW interconnected PV system under different levels of power delivery to the grid that are accompanied with different variations in system parameters. In addition, other controllers used for interconnected PV systems are tested to highlight the advantages of the developed current controller. Performance and comparison results show accurate, fast, and robust responses that are initiated with negligible sensitivity to parameters variations and disturbances on the grid side.
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