基于FPGA的太阳能充电系统的研究与设计
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国家自然科学基金资助项目(51277149)


Research and design of a solar charging system based on FPGA
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    摘要:

    针对高压输电线路污秽监测系统中光伏供电系统的特殊要求,设计了适合于小功率太阳能电池快速为超级电容器充电的系统。本设计采用BUCK-BOOST电路作为充电电路的主拓扑结构,并采用新颖的MPPT跟踪方法,即加权变步长电压滞环扰动观察技术,由现场可编程门陈列实现控制。运用Matlab/Simulink对电路和控制策略进行仿真验证,并完成了充电系统的制作和测试。测试结果表明:该充电系统采用小功率太阳能电池,在正常天气条件下,均能够在较短时间内完成为2F和5F超级电容器组的充电工作。与课题组之前的研究成果相比,本设计有效缩短了充电时间,提高了太阳能的利用率。

    Abstract:

    In order to meet the special application requirements of photovoltaic power system for contamination monitoring system in high voltage transmission line, this paper presents a charging system suitable for fast charging of supercapacitor with low-power solar cells. This design uses BUCK-BOOST circuit as the main charging circuit topology, uses a novel MPPT tracking method, Weighted Variable-Step Voltage-Hysteresis Perturbation & Observation MPPT(WVV P&O MPPT), and achieves control by FPGA. The system’s configuration and control strategy are theoretically verified by Matlab/Simulink, and the production and testing of the charging system are completed. Test results show that the charging system uses low-power solar cells and charges 2F and 5F super capacitors under normal weather conditions, and all of these charging works can be finished during a relatively short time. Compared with the previous research of our task force, this design effectively reduces the charging time and improves the utilization of solar energy.

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程红丽,张耕川.基于FPGA的太阳能充电系统的研究与设计[J].重庆大学学报,2014,37(9):34-39.

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  • 收稿日期:2014-08-05
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  • 在线发布日期: 2014-12-29
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