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Robust Model Predictive Control for Photovoltaic Inverter System With Grid Fault Ride-Through Capability

机译:具有并网穿越能力的光伏逆变器系统的鲁棒模型预测控制

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In this paper, the integration of photovoltaics into distribution power systems with grid fault ride-through capability is investigated by proposing a robust model predictive control scheme. The control system is developed in normal conditions. It regulates the constant dc-link voltage, and it also provides the maximum power transfer to the grid by controlling unity power factor. During grid abnormality, the control system is reorganized to maintain a constant dc-link voltage, prevents the active power and injects a reactive power to support the grid operation. The model predictive control scheme is derived from the dc-link and the grid models. The proposed control scheme is experimentally validated using a hardware prototype of the photovoltaic system connected to an emulated three-phase grid. Experimental results show that the proposed controller is able to provide dc-link voltage regulation, while curtailing the active power during grid abnormalities. Moreover, the controller is able to support the grid under such conditions. The control scheme is quite robust against unknown disturbances and parametric uncertainties in the system.
机译:在本文中,通过提出鲁棒的模型预测控制方案,研究了将光伏技术集成到具有电网故障穿越能力的配电系统中。控制系统是在正常条件下开发的。它调节恒定的直流链路电压,并且还通过控制单位功率因数来提供向电网的最大功率传输。在电网异常期间,控制系统将重新组织以维持恒定的直流母线电压,防止有功功率并注入无功功率以支持电网运行。模型预测控制方案是从直流链路和网格模型中得出的。使用连接至仿真三相电网的光伏系统的硬件原型,通过实验验证了所提出的控制方案。实验结果表明,所提出的控制器能够提供直流链路电压调节,同时减少电网异常期间的有功功率。而且,控制器能够在这种情况下支持电网。该控制方案对于系统中的未知干扰和参数不确定性非常鲁棒。

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