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基于微电压调节的太阳能充放电系统设计
引用本文:吕洪日,李斌.基于微电压调节的太阳能充放电系统设计[J].单片机与嵌入式系统应用,2012,12(8):62-65.
作者姓名:吕洪日  李斌
作者单位:沈阳理工大学研究生学院,沈阳,110159
摘    要:基于微电压调节的太阳能充放电系统,是以微控制器LPC1114为核心的太阳能电池板充放电电路,是实现高效率的智能充放电设计方案。微电压调节理论整合了经典电压回授法和多种太阳能最大功率点追踪思想,利用简单合理的DC/DC平衡技术,充分考虑系统功耗等问题,以简单的电路设计和创新的软件思想实现更高效率的太阳能系统。随着能源危机的加剧,高效率、低成本的太阳能系统备受社会关注,其在民用、交通等领域的运用也更加重要。

关 键 词:太阳能  微电压  最大功率点追踪  LPC1114  DC/DC

Design of Solar Energy Charging and Discharging System Based on Micro-voltage Regulation
Lv Hongri,Li Bin.Design of Solar Energy Charging and Discharging System Based on Micro-voltage Regulation[J].Microcontrollers & Embedded Systems,2012,12(8):62-65.
Authors:Lv Hongri  Li Bin
Affiliation:(The Graduate School, Shenyang Ligong University, Shenyang 110159,China)
Abstract:Solar energy charging and discharging system based on micro voltage regulation is a charging and discharging circuit for solar energy battery panels taking microcontroller LPC1114 as the core, and achieves high-efficiency charging and discharging. Micro-voltage regulation theory integrates classic voltage feedback method and a variety of solar energy maximum power tracking ideas. Using simple and reasonable DC/DC balancing technology, considering sufficiently system power consumption and other questions, this paper achieves more efficient solar energy system through simple circuit design and innovative software idea. With the intensification of energy crisis, high-efficiency low-cost solar energy system receives much concern, and the applications in the civilian, transportation and other fields are increasingly important.
Keywords:solar energy  micro-voltage  maximum power tracking  LPC1114  DC/DC
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