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A Scalable Unit Differential Power Processing System Design for Photovoltaic Applications

机译:光伏应用的可扩展单元差分功率处理系统设计

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Differential power processing (DPP) systems are able to achieve high system efficiency and maintain maximum power production even under mismatched lighting conditions. However, DPP in large-scale systems has challenges of complicated wire connections and high voltage ratings. The unit DPP structure is introduced to overcome these scalability problems, which consists of bidirectional flyback converters and a bidirectional boost converter to achieve maximum power point operation while minimizing processed power. Both voltage balancing and maximum power point tracking modes are used to effectively control system operation. The unit DPP system and control algorithm are verified through simulation and hardware experimentation. The unit DPP system successfully controls the current of each PV panel to reach its maximum power point. Results shows a 9-10% system efficiency increase compared to series string under uneven lighting conditions.
机译:即使在不匹配的照明条件下,差分功率处理(DPP)系统也能够实现高系统效率并保持最大的功率产生。但是,大规模系统中的DPP面临着复杂的电线连接和高额定电压的挑战。引入单元DPP结构来克服这些可扩展性问题,该结构由双向反激转换器和双向升压转换器组成,以实现最大功率点操作,同时将处理后的功率降至最低。电压平衡和最大功率点跟踪模式均用于有效控制系统运行。通过仿真和硬件实验验证了单元DPP系统和控制算法。 DPP单元系统成功控制了每个光伏面板的电流,以达到其最大功率点。结果表明,在不均匀照明条件下,与串联灯串相比,系统效率提高了9-10%。

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