Experimental DC/DC Converter for Photovoltaic Panel with Fully Digital Control Based on Flyback Topology with Nontraditional Snubber Circuit

Dušan Benda, P. Vorel
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引用次数: 3

Abstract

This paper deals with the design, simulation and construction of a switching mode power supply. The power supply is especially intended for one photovoltaic panel with 24 V output voltage and 250 W peak power. The supply is based on a flyback topology with nontraditional passive non-dissipative snubber circuit. The entire converter was simulated in the MATLAB Simulink. The converter is fully digital controlled by a STM32F334 microcontroller with a cascade control loop. The selected topology, fundamental simulation of the converter, snubber circuit and strategy of control and constructed converter are included in this paper. The converter can be used with another same converter for creating a small off grid photovoltaic system.
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基于反激拓扑和非传统缓冲电路的全数字控制光伏板DC/DC变换器实验
本文介绍了一种开关电源的设计、仿真和构造。本电源适用于单块光伏板,输出电压为24v,峰值功率为250w。该电源基于反激拓扑,采用非传统无源无耗散缓冲电路。在MATLAB Simulink中对整个变换器进行了仿真。该转换器由STM32F334微控制器和级联控制回路全数字控制。文中介绍了变换器的拓扑选择、基本仿真、缓冲电路和控制策略以及变换器的构造。该转换器可以与另一个相同的转换器一起使用,以创建一个小型离网光伏系统。
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