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首页> 外文期刊>Journal of power electronics >MPPT Control and Architecture for PV Solar Panel with Sub-Module Integrated Converters
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MPPT Control and Architecture for PV Solar Panel with Sub-Module Integrated Converters

机译:具有子模块集成转换器的PV太阳能电池板的MPPT控制和体系结构

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摘要

Photovoltaic (PV) solar systems with series-connected module integrated converters (MICs) are receiving increased attention because of their ability to create high output voltage while performing local maximum power point tracking (MPPT) control for individual solar panels, which is a solution for partial shading effects in PV systems at panel level. To eliminate the partial shading effects in PV system more effectively, sub-MICs are utilized at the cell level or grouped cell level within a PV solar panel. This study presents the results of a series-output-connection MPPT (SOC-MPPT) controller for sub-MIC architecture using a single sensor at the output and a single digital MPPT controller (sub-MIC SOC-MPPT controller and architecture). The sub-MIC SOC-MPPT controller and architecture are investigated based on boost type sub-MICs. Experimental results under steady-state and transient conditions are presented to verify the performance of the controller and the effectiveness of the architecture.
机译:具有串联模块集成转换器(MIC)的光伏(PV)太阳能系统受到越来越多的关注,因为它们能够在对单个太阳能电池板执行局部最大功率点跟踪(MPPT)控制的同时产生高输出电压。面板级光伏系统中的部分阴影效果。为了更有效地消除PV系统中的部分阴影效果,在MIC太阳能电池板的电池级别或成组的电池级别使用了子MIC。这项研究提出了一种用于sub-MIC架构的串联输出连接MPPT(SOC-MPPT)控制器的结果,该控制器使用输出处的单个传感器和单个数字MPPT控制器(sub-MIC SOC-MPPT控制器和架构)。基于升压型子MIC,研究了子MIC SOC-MPPT控制器和体系结构。给出了稳态和瞬态条件下的实验结果,以验证控制器的性能和体系结构的有效性。

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