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Bidirectional Power Conversion of Isolated Switched-Capacitor Topology for Photovoltaic Differential Power Processors

机译:光伏差分功率处理器的隔离式开关电容器拓扑的双向功率转换

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摘要

Differential power processing (DPP) systems are among the most effective architectures for photovoltaic (PV) power systems because they are highly efficient as a result of their distributed local maximum power point tracking ability, which allows the fractional processing of the total generated power. However, DPP systems require a high-efficiency, high step-up/down bidirectional converter with broad operating ranges and galvanic isolation. This study proposes a single, magnetic, high efficiency, high step-up/down bidirectional DC-DC converter. The proposed converter is composed of a bidirectional flyback and a bidirectional isolated switched-capacitor cell, which are competitively cheap. The output terminals of the flyback converter and switched-capacitor cell are connected in series to obtain the voltage step-up. In the reverse power flow, the converter reciprocally operates with high efficiency across a broad operating range because it uses hard switching instead of soft switching. The proposed topology achieves a genuine on off interleaved energy transfer at the transformer core and windings, thus providing an excellent utilization ratio. The dynamic characteristics of the converter are analyzed for the controller design. Finally, a 240 W hardware prototype is constructed to demonstrate the operation of the bidirectional converter under a current feedback control loop. To improve the efficiency of a PV system, the maximum power point tracking method is applied to the proposed converter.
机译:差分功率处理(DPP)系统是光伏(PV)电力系统中最有效的体系结构之一,因为它们具有分布式局部最大功率点跟踪能力,因此具有很高的效率,从而可以对总发电量进行分数处理。但是,DPP系统需要具有宽工作范围和电流隔离的高效,高升压/降压双向转换器。这项研究提出了一个单一的,磁性的,高效的,高升压/降压的双向DC-DC转换器。所提出的转换器由双向反激和双向隔离式开关电容器单元组成,它们在价格上非常便宜。反激式转换器和开关电容器单元的输出端子串联连接以获得升压。在反向功率流中,由于转换器使用硬开关而不是软开关,因此该转换器在较宽的工作范围内都能高效地往复运行。所提出的拓扑结构在变压器铁芯和绕组上实现了真正的交错式能量传输,从而提供了极好的利用率。分析转换器的动态特性以进行控制器设计。最后,构建了一个240 W的硬件原型,以演示双向转换器在电流反馈控制环路下的操作。为了提高光伏系统的效率,将最大功率点跟踪方法应用于所提出的转换器。

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