The design of advanced multi-junction solar cells using genetic algorithm for the optimization of a SILVACO® novel cell model.

被引:0
|
作者
Michael, Sherif [1 ]
Bates, Drew [1 ]
Utsler, James [1 ]
机构
[1] USN, Postgrad Sch, Monterey, CA 93943 USA
关键词
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
MULTIJUNCTION solar cells consisting of series-stacked p-n junction layers offer a significant improvement in efficiency over conventional solar cells by generating power over a larger spectrum of sunlight. The design of multijunction solar cells is complicated by both the desire to have maximally efficient junction layers and the need to match the current produced in each junction layer under optimal load conditions. The ATLAS device simulator from Silvaco (R) International has been shown in exclusive research at the Naval Postgraduate School to have the capability to simulate multijunction solar cells. This simulation tool has the ability to extract electrical characteristics from a solar cell based on virtual fabrication of its physical structure and bypass the costly "build-and-test" design cycle. A paper introducing this modeling technique has been previously presented at the PVSC conference [2]. The current-matching problem is especially challenging for cells containing four or more junction layers. This paper proposes a method for using ATLAS data to optimize the power output of individual junction layers of an InGaP/GaAs/InGaNAs/Ge four junction solar cell and to construct these junction layers into a current-matched, optimum power multijunction solar cell. Individual junction layer optimization was accomplished through the use of a genetic search algorithm implemented in Matlab. The final multijunction cell current matching was performed using an iterative optimization routine also implemented in Matlab.
引用
收藏
页码:1834 / +
页数:2
相关论文
共 50 条
  • [21] Is conversion efficiency still relevant to qualify advanced multi-junction solar cells?
    Vossier, Alexis
    Riverola, Alberto
    Chemisana, Daniel
    Dollet, Alain
    Gueymard, Christian A.
    PROGRESS IN PHOTOVOLTAICS, 2017, 25 (03): : 242 - 254
  • [22] Effect of chromatic aberration on performance of concentrated multi-junction solar cells and their optimization
    Li Xin
    Lin Gui-Jiang
    Liu Han-Hui
    Chen Song-Yan
    Liu Guan-Zhou
    ACTA PHYSICA SINICA, 2017, 66 (14)
  • [23] Analytical model for multi-junction solar cells prediction in space environment
    Gauffier, A.
    David, J. -P.
    Gilard, O.
    MICROELECTRONICS RELIABILITY, 2008, 48 (8-9) : 1494 - 1499
  • [24] Design of photonic metamaterial multi-junction solar cells using rigorous coupled wave analysis
    Lansey, Eli
    Crouse, David T.
    NEXT GENERATION (NANO) PHOTONIC AND CELL TECHNOLOGIES FOR SOLAR ENERGY CONVERSION, 2010, 7772
  • [25] Optimization of Bonded III-V on Si Multi-Junction Solar Cells
    Yang, Jingfeng
    Kleiman, Rafael
    2013 IEEE 39TH PHOTOVOLTAIC SPECIALISTS CONFERENCE (PVSC), 2013, : 2151 - 2153
  • [26] Radiation resistant low bandgap InGaAsP solar cell for multi-junction solar cells
    Khan, A
    Yamaguchi, M
    Dharmaras, N
    Yamada, T
    Tanabe, T
    Takagishi, S
    Itoh, H
    Oshima, T
    Imaizumi, M
    Matsuda, S
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 2-LETTERS, 2001, 40 (7B): : L728 - L731
  • [27] Ways Optimization Of The Electrical Characteristics Of Multi-junction Solar Cells For Space Application
    Sineva, M., V
    Voevodkin, G. S.
    Vagapova, N. T.
    Kagan, M. B.
    XLIV ACADEMIC SPACE CONFERENCE: DEDICATED TO THE MEMORY OF ACADEMICIAN S.P. KOROLEV AND OTHER OUTSTANDING RUSSIAN SCIENTISTS - PIONEERS OF SPACE EXPLORATION, 2021, 2318
  • [28] Optimization of growth of GaInNAs dilute nitrides for multi-junction solar cell applications
    Shimizu, Yukiko
    Miyashita, Naoya
    Mura, Yusuke
    Uedono, Akira
    Okada, Yoshitaka
    CONFERENCE RECORD OF THE 2006 IEEE 4TH WORLD CONFERENCE ON PHOTOVOLTAIC ENERGY CONVERSION, VOLS 1 AND 2, 2006, : 811 - 814
  • [29] Analysis of a multi-junction solar cell with shunted subcells using SPICE
    Filimonov, E. D.
    Kozhukhovskaia, S. A.
    Mintairov, M. A.
    Shvarts, M. Z.
    17TH RUSSIAN YOUTH CONFERENCE ON PHYSICS OF SEMICONDUCTORS AND NANOSTRUCTURES, OPTO- AND NANOELECTRONICS (RYCPS 2015), 2016, 690
  • [30] Radiation resistant low bandgap InGaAsP solar cell for multi-junction solar cells
    Khan, A. (khan_zeb@hotmail.com), 2001, Japan Society of Applied Physics (40):