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Modelling robustness for a flexible grid-tied photovoltaic generation system

机译:柔性并网光伏发电系统的建模鲁棒性

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摘要

Robustness to modelling inaccuracy is a vital characteristic of a controller, because no matter how accurate a model is, modelling inaccuracies always exist. However, it is difficult to achieve satisfactory nominal and robust performance of a grid-tied photovoltaic (PV) generation system at the same time, using traditional controller design methods. To solve this problem, a -synthesis control method combined with the application of linear fraction transformation (LFT) is proposed in this study. The proposed method is designed with object transforming and implemented with DK iteration. The -analysis and simulation results prove that the objective can be achieved under various microgrid conditions, determined by factors such as grid connection point voltage, load conditions and component parameter perturbations. Compared with traditional controller design methods, the grid-tied PV generation system under -synthesis control exhibits comparatively large perturbation margin for nominal performance and robust stability, and simultaneously is capable of guaranteeing the preset perturbation range for robust performance.
机译:建模不准确的鲁棒性是控制器的重要特征,因为无论模型多么精确,建模不准确总是存在的。但是,使用传统的控制器设计方法很难同时实现并网光伏(PV)发电系统的令人满意的标称和鲁棒性能。为了解决这个问题,本研究提出了一种结合线性分数变换(LFT)的综合控制方法。该方法是通过对象变换设计的,并通过DK迭代实现。分析和仿真结果证明,该目标可以在各种微电网条件下实现,该条件取决于诸如电网连接点电压,负载条件和组件参数扰动等因素。与传统的控制器设计方法相比,处于并网控制下的并网光伏发电系统在标称性能和鲁棒稳定性方面显示出较大的扰动裕度,同时还能够保证预设的扰动范围以实现鲁棒性能。

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