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Differential Power Processing converter with cell balancing operation of multiple photovoltaic module systems

机译:具有多个光伏模块系统的电池平衡操作的差分功率处理转换器

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This paper deals with DPP(Differential Power Processing) converter architecture for partial shading MPPT and cell balancing operation of the Photovoltaic systems using a couple of dc-dc converter topology. As the interest in solar systems evolves, various architectures of Power Conditioning System (PCS) have been studied. Among the conventional architectures, there are two-stage multi-level micro-inverter which is required DC-link voltages balancing between high-side and low-side capacitors for the second-stage multilevel inverter.[2] In this paper, a new architecture employing a DPP converter to the two-stage multi-level inverter is proposed. The proposed architecture consists of a central boost converter and DPP converters of multi-output flyback, converters. If there is no power difference between the solar modules, most of the power passes through the boost converter except the power to maintain the DC-link voltage balancing under CCM mode in the flyback converters. When the power difference occurs, remaining power passes through the boost converter while the differential power is transmitted through the flyback converters. Since the common current among the PV modules at each MPPT operating point is transmitted through the high-efficiency central boost converter, the total conversion efficiency is high. For the verification of this advantage of the proposed scheme, a 150W hardware prototype of the DPP is implemented and tested along with a comparison to a multi-output flyback converter scheme presented in previous studies.
机译:本文讨论了DPP(差分功率处理)转换器架构,该架构使用一对dc-dc转换器拓扑结构对MPPT进行了部分遮蔽,并实现了光伏系统的电池平衡操作。随着对太阳能系统的兴趣的发展,已经研究了功率调节系统(PCS)的各种体系结构。在传统架构中,有两级多级微逆变器,这是第二级多级逆变器在高侧电容器和低侧电容器之间需要直流链路电压平衡的基础。[2]本文提出了一种将DPP转换器应用于两级多电平逆变器的新架构。所提出的架构包括中央升压转换器和多输出反激式转换器的DPP转换器。如果太阳能电池模块之间没有功率差异,则除反激转换器中在CCM模式下维持直流母线电压平衡所需的功率外,大部分功率都通过升压转换器。当出现功率差时,剩余功率通过升压转换器,而差分功率则通过反激转换器传输。由于每个MPPT工作点处的PV模块之间的公共电流都通过高效的中央升压转换器传输,因此总转换效率很高。为了验证所提出方案的这一优势,实施并测试了DPP的150W硬件原型,并与以前研究中提出的多输出反激转换器方案进行了比较。

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