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ОЦЕНКА РАСШИРЕННОЙ НЕОПРЕДЕЛЕННОСТИ РЕЗУЛЬТАТА ИЗМЕРЕНИЯ ТОКА КОРОТКОГО ЗАМЫКАНИЯ ТОНКОПЛЕНОЧНЫХ ФОТОЭЛЕКТРИЧЕСКИХ МОДУЛЕЙ

Abstract

An analysis of uncertainty of the resuls of measurement of short circuit current of the thin-film photovoltaic modules is presented. The Ishikawa diagram showing the main sources of uncertainty at using a pulse solar radiation simulator is developed. The calculation of the expanded total uncertainty of the result of short-circuit current measurement with taking into account the revealed sources of uncertainty has been carried out.

About the Authors

С. Богомолова
Чувашский государственный университет им. И. Н. Ульянова
Russian Federation


Ю. Лукашов
Всероссийский научно-исследовательский институт метрологической службы
Russian Federation


М. Шварц
Физико-технический институт им. А. Ф. Иоффе РАН
Russian Federation


References

1. IEC 60904-4:2009. Photovoltaic devices: Part 4. Procedures for establishing the traceability of the calibration of photovoltaic reference devices.

2. IEC 60904-9: 2007. Photovoltaic devices. Pt. 9: Solar simulator performance requirements. 2nd edn.

3. ГОСТ 8.195–89. ГСИ. Государственная поверочная схема для средств измерений спектральной плотности энергетической яркости, спектральной плотности силы излучения и спектральной плотности энергетической освещенности в диапазоне длин волн от 0,25 до 25,00 мкм; силы излучения и энергетической освещенности в диапазоне длин волн от 0,2 до 25,0 мкм.

4. Hohl-Ebinger J., Warta W. Uncertainty of the spectral mismatch correction factor in STC measurements on photovoltaic devices // Prog. Photovolt: Res. Appl. 2011. V. 19. P. 573–579.

5. Adelhelm R., Berger D. Requirements for a large area solar simulator regarding the measurement of MJ solar cells // Photovoltaic Energy Conversion: Proc of 3rd World Conf. Osaka (Japan), 2003.V.1. P. 821– 824.

6. Mullejans H., Zaaiman W., Galleano R. Analysis and mitigation of measurement uncertainties in the traceability chain for the calibration of photovoltaic devices // Meas. Sci. Technol. 2009. V. 20. P. 075101 –11.

7. Mullejans H. e. a. Comparison of traceable calibration methods for primary photovoltaic reference cells // Prog. Photovolt: Res. Appl. 2005. V. 13. P. 661–671.

8. Emery K. Uncertainty analysis of certified photovoltaic measurements at the National Renewable Energy Laboratory // Technic. Report. 2009.

9. IEC 60904-1: 2006. Photovoltaic devices. Pt. 1. Measurement of photovoltaic current-voltage characteristics. 2nd edn.

10. IEC 60904-2: 2007. Photovoltaic devices: Pt. 2. Requirements for reference solar devices.

11. IEC 60904-3: 2008. Photovoltaic devices: Pt. 3. Measurement principles for terrestrial photovoltaic (PV) solar devices with reference spectral irradiance data.

12. IEC 60891: 2009. Photovoltaic devices - Procedures for temperature and irradiance corrections to measured I-V characteristics of crystalline silicon photovoltaic devices.

13. ISO/IEC Guide 98-3: 2008. Uncertainty of measurement: Pt. 3. Guide to the expression of uncertainty in measurement.

14. Kaoru Ishikawa. Guide to Quality Control (Industrial engineering & technology). Tokyo: Asian Productivity Organization, 1976.

15. Пономарев С.В и др. Управление качеством продукции. Инструменты и методы менеджмента качества: Учебное пособие. М.: РИА «Стандарты и качество», 2005.

16. Руководство по выражению неопределенности измерения/Пер. с англ. СПб.: ВНИИМ им. Д. И. Менделеева, 1999.

17. Luque A., Hegedus S. Handbook of Photovoltaic Science and Engineering. N. Y.: John Wiley & Sons, 2003.


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 ,  ,   . Izmeritel`naya Tekhnika. 2013;(11):7-12. (In Russ.)

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ISSN 0368-1025 (Print)
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