光伏电池,photovoltaic cell
1)photovoltaic cell光伏电池
1.Organic/inorganic hybrid photovoltaic cells有机/无机杂化光伏电池
2.As the maximum power point of photovoltaic cell varies with the sunlight intensity,panel temperature and according to its strong non-linearity,fuzzy parameter self-tuning PID controller is proposed to realize its MPPT (Maximum Power Point Tracking),which balances control precision and control speed reasonably.针对光照强度变化的不确定性、光伏电池阵列温度变化、负载变化和光伏电池强非线性,使光伏电池阵列的最大功率点变化的情况,提出一种采用模糊参数自校正比例、积分、微分(PID)控制实现光伏系统最大功率点跟踪(MPPT)控制的方法。
3.The progress and advantage/disadvantage of polymer photovoltaic cell models for single-layer,double-layer,dis- persed heteorjunction and molecular heteorjunction were reviewed in the paper.对高分子光伏电池的单层、双层、分散异质结、分子异质结模型的发展过程和各自优缺点作了比较详细的介绍,同时分析了高分子光伏电池尚存在的问题,提出了如何改进的方法(或方向),特别指出可以通过合成新的窄带隙光电活性材料和精确控制材料形态来提高总能量转换效率,并探讨了高分子光电池的发展前景。
英文短句/例句

1.Study on the power generation of solar cell with or without concentration聚光和非聚光太阳能光伏电池发电实验比较
2.Research on A Digital Photovoltaic Simulator Based on DSP;基于DSP的光伏电池数字模拟系统研究
3.Study of GaSb Thermophotovoltaic Cells and Its AntireflectionGaSb热光伏电池及其减反射层的研究
4.Integrated circuit design for solar cell maximum power point tracking光伏电池最大功率点跟踪芯片的设计
5.Study on Photovoltaic Array Simulation Model太阳能光伏电池阵列仿真模型的研究
6.Improved MPPT algorithm based on output properties of PV cells基于光伏电池输出特性的MPPT算法研究
7.Design on Photovoltaic Cell MPPT Based on Fuzzy Control基于模糊控制的光伏电池MPPT的设计
8.Research of Maximum Power Point Based on GA-RBF Neural Network基于GA-RBF神经网络的光伏电池MPPT研究
9.Versatile Model for Photovoltaic Cell Based on MATLAB基于MATLAB的光伏电池通用数学模型
10.Research on the MPPT of photovoltaic cells光伏电池最大功率点跟踪方法的研究
11.The effect of concentrated light intensity on output performance of solar cell arrays聚光光强对光伏电池阵列输出性能的影响
12.Thermophotovoltaics( TPV) technologies are the use of PV cells to convert heat radiation into electricity.热光伏是通过光伏电池将热辐射能量转换成电能的技术。
13.THE HEAT PIPE COOLING METHOD ANALYSE OF SOLAR PHOTOVOLTAIC CELLS太阳能聚光光伏电池热管冷却方法分析
14.The Research and Design on Pv Power Applied System Based on MPPT;基于MPPT的光伏电池电力应用系统的研究与设计
15.Simulation Research on PV Cell Characteristic Based on PSpice基于PSpice的硅型光伏电池电特性仿真研究
16.STUDY OF THE FIXED ARRAY OF PV MODULES关于定向光伏电池阵列布置间距的探讨
17.A Study on the Photovoltaic Maximum Power Tracking System Using a Fuzzy Controller;光伏电池最大功率跟踪器的模糊控制及其应用
18.electronic photo-voltaic cell电子光生伏打电池,阻挡层光电池
相关短句/例句

PV cell光伏电池
1.Simulation Research on PV Cell Characteristic Based on PSpice基于PSpice的硅型光伏电池电特性仿真研究
2.A novel method for simulating the work status of the PV cells and inverter using normal modules offered by the MATLAB software package is presented in this paper.仿真结果显示该系统能够高精度地实现对光伏电池最大功率点的跟踪(MPPT),高效地通过逆变器将有功功率送入电网,且输入电网的无功功率可调。
3.In this paper,math model is studied based on physics theory of PV cell,and the influence of series resistor Rs and parallel resistor Rsh on PV cell characteristic is analyzed.针对光伏电池研究了基于物理机制的数学模型,分析了串联电阻和并联电阻对光伏电池特性的影响。
3)solar cell光伏电池
4)Photovoltaic cells光伏电池
1.Amorphous/crystalline blend effects on the performance of polymer-based photovoltaic cells非晶/结晶共混对聚合物光伏电池性能的影响
2.Research on the MPPT of photovoltaic cells光伏电池最大功率点跟踪方法的研究
5)photovoltaic cell光伏打电池
1.Recent works in our lab are reviewed from the following aspects: Synthesis of semiconductors, study on photovoltaic cells, investigation of mechanism and fabrication of thin films.近年来,有机半导体太阳能电池引起了科学工作者的极大兴趣,共轭聚合物/C60复合体系在光伏打电池中的应用更是成为其中一个新的研究热点。
2.Studies on photoinduced electron transfer and recent advancements of conjugated polymer/C 60 composites in photovoltaic cells are reviewed.本文介绍了共轭聚合物 /C6 0 复合体系的光诱导电子转移 ,以及近年来该体系在光伏打电池中的研究进
6)photovoltage cell光伏特电池
1.P-(CH)x/n-SnO2 heterojunction photovoltage cells have been fabricated by the modified Naarmann method,and doped with iodine.用改进的Naarmann方法,在n型SnO_2基片上直接合成聚乙炔,用碘液相掺杂,制成p-聚乙炔/n-SnO_2异质结光伏特电池。
延伸阅读

光伏电池分子式:CAS号:性质:又称光伏电池。由半导体p/n结制成。当受太阳光照射时,一定波长的光子可使p/n结附近产生电子-空穴对,电子移向n区,空穴移向p区,在p区和n区之间形成电位降,当外接负载时可输出电能。电池中无化学变化,是一种物理电源,一般用硅单晶或多晶、硫化镉、砷化镓等作基体,价格较贵,主要用于人造卫星、宇宙飞船和星际站作主电源。目前作为商品应用最广的是硅系太阳能电池。此外还研制成功GaAs、CdS、CdTe等太阳能电池。鉴于太阳能是取之不尽的能源,干净清洁,故有广泛的发展前景。由于价格较贵,目前,主要应用于宇航飞行器、无人中转站、无人灯塔及小型计算器等。