A digital predictive controller for a SEPIC-based battery charger in photovoltaic power systems

Hoda Dadashzadeh, Alireza E. Khosroshahi, S. Hosseini
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引用次数: 5

Abstract

This paper presents the optimal controller design for an improved battery charger structure which can be supplied from a photovoltaic power system. The transfer characteristic of the presented converter is the same as a buck/boost converter. Therefore, even in extreme conditions, the presented converter has the ability to extract the maximum power from the photovoltaic power system and charge the battery efficiently. Other advantages of the presented converter such as continuous smooth input current also make it suitable for photovoltaic generation systems. The presented converter consists of two charging modes which develop the efficiency of charging; pulsating output current and constant voltage. A predictive controller is designed for the presented converter which assures the optimal operation of the system. The controller chooses the best operating conditions for the photovoltaic power system. Simulation results are provided to validate the proper operation of the controller.
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光伏发电系统中基于sepic的电池充电器的数字预测控制器
本文提出了一种改进的光伏供电电池充电器结构的最优控制器设计。该变换器的传输特性与降压/升压变换器相同。因此,即使在极端条件下,该变流器也能够从光伏发电系统中提取最大功率,并有效地为电池充电。该变换器的其他优点,如输入电流连续平稳,也使其适用于光伏发电系统。该变换器由两种充电模式组成,提高了充电效率;脉动输出电流和恒压。为保证系统的最优运行,设计了预测控制器。控制器选择光伏发电系统的最佳运行工况。仿真结果验证了控制器的正常运行。
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