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Results of the Sophia module intercomparison part-1: stc, low irradiance conditions and temperature coefficients measurements of C-Si technologies

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conference contribution
posted on 2015-06-09, 15:20 authored by Blagovest Mihaylov, Jake BowersJake Bowers, Tom BettsTom Betts, Ralph Gottschalg, T. Krametz, R. Leidl, K.A. Berger, Shokufeh Zamini, N.J.J. Dekker, G. Graditi, F. Roca, M. Pellegrino, G. Flaminio, P. Pugliatti, A. Di Stefano, F. Aleo, G. Gigliucci, W. Ferrara, G. Razongles, J. Merten, A. Pozza, A. Santamaria Lancia, S. Hoffmann, M. Koehl, A. Gerber, J. Noll, F. Paletta, Gabi Friesen, Sebastian Dittmann
The results of a measurement intercomparison between eleven European laboratories measuring PV energy relevant parameters are reported. The purpose of the round-robin was to assess the uncertainty analyses of the participating laboratories on c-Si modules and to establish a baseline for the following thin-film round-robin. Alongside the STC measurements, low irradiance conditions (200W/m2) and temperature coefficients measurements were performed. The largest measurement deviation from the median at STC was for HIT modules from -3.6% to +2.7% in PMAX, but in agreement with the stated uncertainties of the participants. This was not the case for low irradiance conditions and temperature coefficients measurements with some partners underestimating their uncertainties. Larger deviations from the median from -5% to +3% in PMAX at low irradiance conditions and -6.6% to +18.3% for the PMAX temperature coefficient were observed. The main sources of uncertainties contributing to the spread in measurements were the RC calibration, mismatch factor and capacitive effects at STC and low irradiance conditions as well as the additional light inhomogeneity for the latter. The uncertainty in the junction temperature and the temperature deviation across the module were the major contributors for temperature coefficients measurements.

Funding

B. Mihaylov would like to acknowledge his funding through the RCUK Supergen project ‘Supersolar’ [grant no: EP/J017361/1]. This work has been funded by the European FP7 SOPHIA project, grant number: 262533.

History

School

  • Mechanical, Electrical and Manufacturing Engineering

Research Unit

  • Centre for Renewable Energy Systems Technology (CREST)

Published in

29th European Photovoltaic Solar Energy Conference and Exhibition

Pages

2443 - 2448

Citation

MIHAYLOV, B.V. ... et al, 2014. Results of the Sophia module intercomparison part-1: stc, low irradiance conditions and temperature coefficients measurements of C-Si technologies. IN: Proceedings of the 29th European Photovoltaic Solar Energy Conference and Exhibition, 23rd-25th September 2014, Amsterdam, pp. 2443 - 2448.

Publisher

WIP Renewable Energies

Version

  • SMUR (Submitted Manuscript Under Review)

Publisher statement

This work is made available according to the conditions of the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) licence. Full details of this licence are available at: https://creativecommons.org/licenses/by-nc-nd/4.0/

Publication date

2014

Notes

This is a conference paper.

ISBN

3936338345

Language

  • en

Location

Amsterdam

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