基于级联变换器的分布式MPPT与分布式超级电容储能组合光伏装置

I. Shchur, D. Kulwas, R. Wielgosz
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引用次数: 9

摘要

本文提出了一种基于级联半桥DC-DC变换器的单机/并网小型光伏(PV)装置的新架构。级联配置提供分布式最大功率点跟踪(MPPT),增加了发电量,但更复杂,更昂贵。此外,级联配置的DC-DC转换器的升压拓扑在不同类型PV板条件下的太阳能电池板不匹配的情况下不能有效工作,它们部分遮阳,老化或制造变化。我们建议在级联DC-DC变换器的每个通道中引入一个结合分布式MPPT和分布式储能的超级电容器(SC)组。在PV面板和DC-DC转换器之间的每个通道中设置SC包,可以使用SC包进行简单的MPPT控制,同时实现能源产生阶段与能源消耗阶段的功率解耦。后者允许改进DC-DC升压变换器级联串联输出的分布式控制。为了实现对拟建光伏装置的控制,开发了单电流传感器搜索MPPT、直流母线电压平整度交错控制、SC电压平衡、能量管理系统等控制子系统。在Matlab/Simulink环境中进行的仿真研究表明了所提出的解决方案的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combination of Distributed MPPT and Distributed Supercapacitor Energy Storage Based on Cascaded Converter in Photovoltaic Installation
This paper presents a proposal for a new architecture of a stand-alone/grid-connection small photovoltaic (PV) installation based on a cascaded half-bridge DC-DC converter. Cascaded configuration provides distributed maximum power point tracking (MPPT), which increase power generation, but is more complex and more expensive. Furthermore, boost topology of DC-DC converters in cascaded configuration does not efficient works in the cases of mismatch in solar panels conditioned of the different types of PV panels, they partial shading, aging, or manufacturing variation. We propose to introduce in each a channel of cascaded DC-DC converter a supercapacitor (SC) pack combining distributed MPPT with distributed energy storage. Setting the SC pack in each a channel between the PV panel and the DC-DC converter enables using of SC pack for simple MPPT control and simultaneously power decoupling of energy generation stage from energy consumption. The latter allows improving distributed control of DC-DC boost converters in cascade with series connected outputs. To control of proposed PV installation,it has been developed some control subsystems: searching MPPT with one current sensor, flatness interleaving control of DC-bus voltage, balancing of SC voltages, energy management system (EMS). The conducted simulation studies in the Matlab/Simulink environment{showed the workability and effectiveness of the proposed solution.
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