红外与激光工程
紅外與激光工程
홍외여격광공정
INFRARED AND LASER ENGINEERING
2015年
1期
176-181
,共6页
薛继元%冯文林%赵芬%杨晓占
薛繼元%馮文林%趙芬%楊曉佔
설계원%풍문림%조분%양효점
光伏%太阳能电池板%Matlab/Simulink%输出特性
光伏%太暘能電池闆%Matlab/Simulink%輸齣特性
광복%태양능전지판%Matlab/Simulink%수출특성
photovoltaic%solar panels%Matlab/Simulink%output characteristic
光伏照明系统中作为能量来源的太阳能电池板,其输出特性关系到能量转换效率的衡量以及最大功率跟踪精确性的判断。精确模拟了电池板的等效电路,并通过在Matlab/Simulink中建立其模型,得出电池板输出功率会随着电压的不断增大,先增大再减小;而且随着光照强度的增强而增大和温度的升高而减小。此外,通过对电池板模型进行改善,得出电池板最大功率处所对应的电压值会随着并联电池板的数量增加而减小,但当并联电池板数量超过3时输出曲线就基本保持不变;最大功率峰值会随着串联电池板数量的增加先增大,当串联电池板数量超过一定值时最大功率值开始保持不变。这为光伏照明系统的建立提供良好的理论支持。
光伏照明繫統中作為能量來源的太暘能電池闆,其輸齣特性關繫到能量轉換效率的衡量以及最大功率跟蹤精確性的判斷。精確模擬瞭電池闆的等效電路,併通過在Matlab/Simulink中建立其模型,得齣電池闆輸齣功率會隨著電壓的不斷增大,先增大再減小;而且隨著光照彊度的增彊而增大和溫度的升高而減小。此外,通過對電池闆模型進行改善,得齣電池闆最大功率處所對應的電壓值會隨著併聯電池闆的數量增加而減小,但噹併聯電池闆數量超過3時輸齣麯線就基本保持不變;最大功率峰值會隨著串聯電池闆數量的增加先增大,噹串聯電池闆數量超過一定值時最大功率值開始保持不變。這為光伏照明繫統的建立提供良好的理論支持。
광복조명계통중작위능량래원적태양능전지판,기수출특성관계도능량전환효솔적형량이급최대공솔근종정학성적판단。정학모의료전지판적등효전로,병통과재Matlab/Simulink중건립기모형,득출전지판수출공솔회수착전압적불단증대,선증대재감소;이차수착광조강도적증강이증대화온도적승고이감소。차외,통과대전지판모형진행개선,득출전지판최대공솔처소대응적전압치회수착병련전지판적수량증가이감소,단당병련전지판수량초과3시수출곡선취기본보지불변;최대공솔봉치회수착천련전지판수량적증가선증대,당천련전지판수량초과일정치시최대공솔치개시보지불변。저위광복조명계통적건립제공량호적이론지지。
The solar panel is power source in the photovoltaic lighting system, and the output characteristic is a significant factor as assessing energy transformation and maximum power point tracking (MPPT) efficiency. In this paper, the module of the solar panel was built by using Matlab/Simulink, and the equivalent circuit of solar panel was also been simulated accurately. On one hand, the output power firstly increased if the voltage grew, and then decreased if the voltage continually grew. On the other hand, the output power could increase when the temperature decreased or when the intensity of illumination increased. In addition, the voltage at the maximum power would decrease if the number of the paralleled solar panels increased, but the tendency would keep the same when the number of the solar panel was bigger than 3. And the maximum output power would increase with the number of the series’ panels increasing. However, the maximum output power would remain unchanged when the number of the panels was more than a certain quantity. This present work can provide theoretical support for building the photovoltaic lighting system.