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Optimal Output Voltage Control of Solar Photovoltaic Power System

机译:太阳能光伏发电系统的最优输出电压控制

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The intensity of the sunlight varies throughout the day due to various environmental factors. This variation in the intensity of the incoming sunlight falling on the solar photovoltaic (PV) system makes the overall output voltage of the system unstable. The sunlight variation causes the generated output voltage to change abruptly. Therefore, for regulating the output voltage, a buck-boost converter should be used, which will accordingly buck or boost the output voltage based on the sunlight intensity variations. In this article, an optimal model predictive controller (MPC) is designed and analyzed for regulating the output of the overall PV system. The designed MPC controller optimally controls the PWM duty cycle in order to stabilize and adjust the overall voltage of the PV system. The response of the designed optimal controller is also compared with the classical control techniques as well. The results show that the designed MPC controller regulates the output response of the PV system very well in the presence of system parameters variations and uncertainties.
机译:由于各种环境因素,日照强度全天变化。落在太阳能光伏(PV)系统上的入射阳光强度的这种变化使系统的总输出电压不稳定。阳光的变化会导致产生的输出电压突然变化。因此,为了调节输出电压,应使用降压-升压转换器,该转换器将根据日照强度变化对输出电压进行降压或升压。在本文中,设计并分析了用于预测整个光伏系统输出的最优模型预测控制器(MPC)。设计的MPC控制器可以最佳地控制PWM占空比,以稳定和调整光伏系统的总电压。设计的最佳控制器的响应也与经典控制技术进行了比较。结果表明,在存在系统参数变化和不确定性的情况下,设计的MPC控制器可以很好地调节光伏系统的输出响应。

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