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High-density power converters for sub-module photovoltaic power management

机译:用于子模块光伏电源管理的高密度电源转换器

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This work presents an overview of distributed submodule power electronics based on resonant and switched-capacitor topologies configured in a ladder architecture. We present a new resonant switched-capacitor topology, termed a ‘direct conversion’ topology because current flow is always uni-directional in the inductor component. The direct topology can be seen as a resonant version of the more common 3-level buck converter. We discuss some of the relevant theory for the direct topology compared to past work on the ‘indirect’ resonant switched capacitor architecture. We also present a high-density DC-DC converter that can be used in resonant or switched capacitor modes that is implemented in a 0.18 μm bulk CMOS integrated circuit. The presented topologies implement voltage equalization to mitigate power loss due to mismatch at the sub-module level in PV systems. We provide measurement results of key converter specifications based on laboratory testing and also with real PV setups. To test the chip-scale converter, we used a PV module built up from individual cells on a Lexan laminate to provide custom string lengths of 4–6 individual PV cells.
机译:这项工作概述了基于梯形架构中配置的谐振和开关电容器拓扑结构的分布式子模块功率电子器件。我们提出了一种新的谐振开关电容器拓扑,称为“直接转换”拓扑,因为电流在电感器组件中始终是单向的。直接拓扑可以看作是更常见的3级降压转换器的谐振版本。与以往关于“间接”谐振开关电容器架构的工作相比,我们讨论了一些有关直接拓扑的理论。我们还提出了一种高密度DC-DC转换器,可在0.18μm体CMOS集成电路中实现的谐振或开关电容器模式下使用。提出的拓扑实现了电压均衡,以减轻由于光伏系统中子模块级别的失配而导致的功率损耗。我们提供基于实验室测试以及实际PV设置的关键转换器规格的测量结果。为了测试芯片级转换器,我们使用了由Lexan层压板上的单个电池构建的PV模块,以提供4–6个单个PV电池的定制字符串长度。

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