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Robust Maximum Power Tracking Control of Uncertain Photovoltaic Systems: A Unified T-S Fuzzy Model-Based Approach

机译:不确定光伏系统的鲁棒最大功率跟踪控制:基于统一T-S模糊模型的方法

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摘要

This paper presents a unified T-S fuzzy model-based maximum power control approach to enhance the efficiency and robustness of the solar photovoltaic (PV) power generation. First, the maximum-power-voltage-based control scheme and direct maximum power control scheme are introduced for the maximum power point tracking (MPPT). By using T-S fuzzy model representation, the two MPPT control schemes are formulated to an output tracking control problem in a unified form. Then, the T-S fuzzy observer and controller are developed to achieve asymptotic MPPT for uncertain PV power systems, where the controller and observer gains are able to be separately solved from novel linear matrix inequality formulation. Furthermore, the MPPT robustness is also discussed in the presence of rapidly changing atmosphere and external disturbances. Different from the traditional MPPT approaches, the proposed T-S fuzzy controller does not require searching the maximum power operational point and using coordinate transformation. All the buck, boost, or buck–boost converters can be used to achieve MPPT in the same control method. Finally, the satisfactory performance is shown from the simulation and experimental results.
机译:本文提出了一种基于统一T-S模糊模型的最大功率控制方法,以提高太阳能光伏(PV)发电的效率和鲁棒性。首先,针对最大功率点跟踪(MPPT)引入了基于最大功率电压的控制方案和直接最大功率控制方案。通过使用T-S模糊模型表示,将两种MPPT控制方案统一表述为输出跟踪控制问题。然后,开发了T-S模糊观测器和控制器,以实现不确定光伏发电系统的渐近MPPT,其中控制器和观测器的增益可以与新型线性矩阵不等式分开求解。此外,还讨论了在快速变化的气氛和外部干扰的情况下的MPPT鲁棒性。与传统的MPPT方法不同,所提出的T-S模糊控制器不需要搜索最大功率工作点并使用坐标变换。所有降压,升压或降压-升压转换器都可用于以相同的控制方法实现MPPT。最后,通过仿真和实验结果表明了令人满意的性能。

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