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Resonant Switched-Capacitor Converters for Sub-module Distributed Photovoltaic Power Management

机译:用于子模块分布式光伏电源管理的谐振开关电容转换器

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This paper discusses the theory and implementation of a class of distributed power converters for photovoltaic (PV) energy optimization. Resonant switched-capacitor converters are configured in parallel with strings of PV cells at the sub-module level to improve energy capture in the event of shading or mismatch. The converters operate in a parallel-ladder architecture, enforcing voltage ratios among strings of cells at terminals normally connected to bypass diodes. The balancing function extends from the sub-module level to the entire series string through a dual-core cable and connector. The parallel configuration allows converters to handle only mismatch power and turn off if there is no mismatch in the array. Measurement results demonstrate insertion loss below 0.1% and effective conversion efficiency above 99% for short-circuit current mismatch gradients up to 40%. The circuit implementation eliminates large power magnetic components, achieving a vertical footprint less than 6 mm. The merits of a resonant topology are compared to a switched-capacitor topology.
机译:本文讨论了用于光伏(PV)能量优化的一类分布式电源转换器的理论和实现。谐振开关电容器转换器在子模块级别与光伏电池串并联配置,以在发生阴影或不匹配时改善能量捕获。转换器以并行梯形架构运行,从而在通常连接到旁路二极管的端子上提高电池串之间的电压比。平衡功能通过双芯电缆和连接器从子模块级别扩展到整个系列串。并行配置允许转换器仅处理不匹配电源,如果阵列中不存在不匹配,则关闭电源。测量结果表明,对于高达40%的短路电流失配梯度,插入损耗低于0.1%,有效转换效率高于99%。该电路实现省去了大功率电磁元件,实现了小于6mm的垂直占地面积。将谐振拓扑的优点与开关电容器拓扑进行了比较。

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