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飞行器供电系统最大功率跟踪与测试技术研究
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作者 蒋昆松 《电源技术应用》 2017年第1期4-7,19,共5页
分析了太阳电池光伏特性、DC/DC变换器工作原理以及最大功率点跟踪算法,综合了空间电源的实际情况,采用了组合式MPPT算法。旨在研究飞行器的太阳能蓄电池节能控制系统对太阳能的利用效率。利用太阳能功率表测出光照强度变化曲线,获... 分析了太阳电池光伏特性、DC/DC变换器工作原理以及最大功率点跟踪算法,综合了空间电源的实际情况,采用了组合式MPPT算法。旨在研究飞行器的太阳能蓄电池节能控制系统对太阳能的利用效率。利用太阳能功率表测出光照强度变化曲线,获得仿真所需的参数。通过建立光伏阵列仿真模型,得到组合式算法、扰动干扰法、电导增量法三条实际功率跟踪曲线。锁定太阳电池最佳输出电压采用Buck降压的方式对镉镍蓄电池组进行充电。这样系统能实现最大限度的稳定运行,提高了可靠性。本次设计利用DC/DC升压电路提供给电池充电系统,并且利用DSP编程产生PWM来跟踪最大功率(MPPT)输出。本系统电路结构简单、各波形良好,测量结果精确,符合各项设计要求。 展开更多
关键词 太阳电池光伏特性 最大功率点跟踪 DC/DC升压电路
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Influence of the replacement of alkoxyl with alkylthienyl on photovoltaic properties of two small molecule donors for organic solar cells 被引量:2
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作者 Shaoqing Zhang Liyan Yang +4 位作者 Delong Liu Chang He Jianqi Zhang Yun Zhang Jianhui Hou 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第10期1340-1348,共9页
Two benzo[1,2-b:4,5-b¢]dithiophene(BDT)-based small molecule(SM) donor materials with identical conjugated backbones but different substitution groups, named as DRTB-O and DRTB-T, were well explored to demonstrate th... Two benzo[1,2-b:4,5-b¢]dithiophene(BDT)-based small molecule(SM) donor materials with identical conjugated backbones but different substitution groups, named as DRTB-O and DRTB-T, were well explored to demonstrate the influence of the replacement of alkoxy with alkylthienyl on their photovoltaic properties in fullerene-based and fullerene-free organic solar cells(OSCs). The study shows that the two SM donors possess similar absorption spectra and energy levels but different crystalline structures in solid films. The carrier transport property and phase separation morphologies of the blend films have also been fully investigated.By employing PC71 BM as the acceptor, the power conversion efficiency(PCE) of DRTB-O:PC71BM and DRTB-T:PC71BM based devices were 4.91% and 7.08%, respectively. However, by blending with IDIC, the two SM donors exhibited distinctly different photovoltaic properties in fullerene-free OSCs, and the PCE of DRTB-O:IDIC and DRTB-T:IDIC based devices were 0.15% and9.06%, respectively. These results indicate that the replacement of alkoxyl with alkylthienyl in designing SM donor materials plays an important role in the application of fullerene-free OSCs. 展开更多
关键词 organic solar cells small molecule fullerene-free side chain molecular design
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