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Photovoltaic DC-DC module integrated converter for novel cascaded and bypass grid connection topologies - design and optimisation

机译:用于新颖的级联和旁路电网连接拓扑的光伏DC-DC模块集成转换器-设计和优化

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摘要

Grid connected photovoltaic (PV) inverters fall into three broad categories - central, string and module integrated converters (MICs). MICs offer many advantages in performance and flexibility, but are at a cost disadvantage. Two alternative novel approaches proposed by the author - cascaded dc-dc MICs and bypass dc-dc MICs - integrate a simple non-isolated intelligent dc-dc converter with each PV module to provide the advantages of dc-ac MICs at a lower cost. A suitable universal 150 W 5 A dc-dc converter design is presented based on two interleaved MOSFET half bridges. Testing shows zero voltage switching (ZVS) keeps losses under 1 W for bi-directional power flows up to 15 W between two adjacent 12 V PV modules for the bypass application, and efficiencies over 94% for most of the operational power range for the cascaded converter application. Based on the experimental results, potential optimizations to further reduce losses are discussed.
机译:并网光伏(PV)逆变器分为三大类-中央,串和模块集成转换器(MIC)。 MIC在性能和灵活性方面具有许多优势,但在成本上却处于劣势。作者提出的两种替代性新方法-级联dc-dc MIC和旁路dc-dc MIC-将简单的非隔离式智能dc-dc转换器与每个PV模块集成在一起,以较低的成本提供dc-ac MIC的优势。基于两个交错的MOSFET半桥,提出了一种合适的通用150 W 5 A dc-dc转换器设计。测试表明,对于旁路应用,两个相邻的12 V PV模块之间的双向功率流高达15 W时,零电压开关(ZVS)可使损耗保持在1 W以下,对于级联,大多数工作功率范围内的效率都超过94%转换器应用程序。根据实验结果,讨论了进一步减少损失的潜在优化方法。

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