Acta Optica Sinica, Volume. 41, Issue 3, 0312004(2021)
Comparison of Photoelectric Performance Measurements for GaInP/InGaAs/Ge Triple-Junction Space Solar Cells Based on Solar Simulator and High Altitude Natural Sunlight
[1] Green M A, Dunlop E D, Hohl-Ebinger J et al. Solar cell efficiency tables[J]. Progress in Photovoltaics: Research and Applications, 28, 3-15(2020).
[4] King R P, Fetzer C M, Colter P C et al. High-efficiency space and and terrestrial multijunction solar cells through bandgap control in cell structures. [C]∥The 29th IEEE Photovoltaic Specialists Conference, May 20-24, 2002, New Orleans, Louisiana. New York: IEEE, 1190685(2002).
[5] Bailey S, Raffaelle R. Space solar cells and arrays[M]. ∥Luque A, Hegedus S. Handbook of photovoltaic science and engineering. Chichester, UK: Wiley, 413-448(2005).
[8] Jenkins P, Scheiman D, Goodbody C et al. Results from an international measurement round robin of III-V triple-junction solar cells under air mass zero. [C]∥2006 IEEE 4th World Conference on Photovoltaic Energy Conference, May 5-12, 2006, Waikoloa, Hawaii, USA. New York: IEEE, 279885(2006).
[9] General Administration of Quality Supervision, Inspection, Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China,(2017).
[10] Ma J J[M]. Physical power technology, 218-246(2020).
[11] calibration procedures: ISO 15387-2005[EB/OL]. -06-01)[2020-06-05]. https:∥www.sis.se/api/document/preview/906051/.(2005).
[12] Photovoltaic assemblies, components: ECSS-E-ST-20-08C[EB/OL]. -07-18)[2020-06-05]. https:∥ecss.nl/standard/ecss-e-st-20-08c-photovoltaic-assemblies-and-components/.(2012).
[13] General Administration of Quality Supervision, Inspection, Quarantine of the People's Republic of China,(2017).
[20] Meng H F, Yang H D, Zhang J C et al. Spectral responsivity measurements of monolithic GaInP2/InGaAs/Ge triple-junction solar cells[J]. Proceedings of SPIE, 11189, 111891T(2019).
[21] devices: IEC 60904-8-1[EB/OL]. -05-01)[2020-06-05]. https:∥standards.globalspec.com/std/10157861/60904-8-1.(2017).
[22] Hoheisel R, Lorentzen J. High-altitude balloon based AM0 solar cell calibration platform. [C]∥43rd Photovoltaic Specialists Conference, June 5-10, 2016, Portland, OR, USA. New York: IEEE, 16483838(2016).
[23] Jenkins P, Wilt D, Scheiman D et al. -06-01)[2020-06-05]. http:∥articles.adsabs.harvard.edu/cgi-bin/nph-iarticle_query?2011ESASP.690E.15J&defaultprint=YES&filetype=.pdf.(2011).
[24] Snyder D B. Solar cell short circuit current errors and uncertainties during high altitude calibrations. [C]∥38th Photovoltaic Specialists Conference, June 3-8, 2012, Austin, Texas, USA. New York: IEEE, 6318182(2012).
[25] Anspaugh B E. JPL balloon flight solar cell calibration program[EB/OL][2020-06-05]. 2002-03-01) https:∥ntrs.nasa.gov/archive/nasa/casi.ntrs.nasa.gov/20020048594.pdf.(2001).
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Haifeng Meng, Guoning Xu, Junchao Zhang, Ying Miao, Yingwei He, Bifeng Zhang, Chuan Cai, Shuai Man, Meng Wang, Ning Xu, Limin Xiong. Comparison of Photoelectric Performance Measurements for GaInP/InGaAs/Ge Triple-Junction Space Solar Cells Based on Solar Simulator and High Altitude Natural Sunlight[J]. Acta Optica Sinica, 2021, 41(3): 0312004
Category: Instrumentation, Measurement and Metrology
Received: Aug. 3, 2020
Accepted: Sep. 17, 2020
Published Online: Feb. 28, 2021
The Author Email: Meng Haifeng (menghf@nim.ac.cn), Xiong Limin (xlmin@nim.ac.cn)