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Analysis and implementation of the Buck-Boost Modified Series Forward converter applied to photovoltaic systems

机译:应用于光伏系统的降压-升压型串联正激变换器的分析与实现

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The mismatching phenomenon is one of the main issues in photovoltaic (PV) applications. It could reduce the generated power of a string when a PV panel has different performances from the other PV panels connected to the same string. Distributed Maximum Power Point Tracking (DMPPT) architectures are one of the most promising solutions to overcome the drawbacks associated with mismatching phenomena in PV applications. In this kind of architectures, a DC-DC module integrated converter (MIC) manages each PV panel, isolating it from the rest of the PV panels, for harvesting the maximum available power from the Sun. Due to the high number of DCDC converters used in a grid-tied PV installation, the most desired MIC requirements are high efficiency, low cost and the capability of voltage step-up and step-down.This paper proposes the Buck-Boost Modified Forward (BBMSF) converter as a good candidate to be applied in DMPPT architectures. A complete analysis of the BBMSF converter is carried out, including the steady-state analysis as well as the small signal analysis in continuous conduction mode.The main advantages of the BBMSF converter are its step-up and step-down voltage transfer function; a higher simplicity, since it only includes a single controlled switch; the soft switching characteristics in all the diodes and MOSFET, reaching in some cases ZVS and ZCS, and yielding high efficiencies; the use of an autotransformer, with better performances than a typical Forward transformer; and the good dynamic performance, like the Forward converter ones.The theoretical analyses are validated through the experimental results in a 225 W BBMSF prototype designed and built under the requirements of a 100 kW grid-tied PV installation, achieving an efficiency up to 93.6%.
机译:失配现象是光伏(PV)应用中的主要问题之一。当光伏面板的性能不同于连接到同一弦的其他光伏面板时,它可能会降低弦的产生功率。分布式最大功率点跟踪(DMPPT)架构是克服光伏应用中与失配现象相关的缺点的最有前途的解决方案之一。在这种架构中,DC-DC模块集成转换器(MIC)管理每个PV面板,将其与其余PV面板隔离开来,以获取来自Sun的最大可用功率。由于并网光伏设备中使用的DCDC转换器数量众多,因此最需要的MIC要求是高效率,低成本以及升压和降压能力。本文提出了Buck-Boost修正正向(BBMSF)转换器是要在DMPPT体系结构中应用的很好的选择。对BBMSF转换器进行了完整的分析,包括稳态分析以及连续导通模式下的小信号分析。BBMSF转换器的主要优点是其升压和降压电压传递功能;更高的简便性,因为它仅包含一个受控开关;所有二极管和MOSFET的软开关特性,在某些情况下达到ZVS和ZCS,并具有很高的效率;使用自耦变压器,其性能优于典型的正向变压器;通过在100 kW并网光伏装置的要求下设计和建造的225 W BBMSF原型的实验结果验证了理论分析,并通过实验结果验证了理论分析的效率,效率高达93.6% 。

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