A new method for estimating angular, spectral and low irradiance losses in photovoltaic systems using an artificial neural network model in combination with the Osterwald model
暂无分享,去创建一个
Florencia Almonacid | Pedro M. Rodrigo | Pedro Pérez-Higueras | G. Almonacid | C. Rus | F. Almonacid | C. Rus | P. Pérez-Higueras | P. Rodrigo | G. Almonacid
[1] William E. Boyson,et al. Photovoltaic array performance model. , 2004 .
[2] N. Martín,et al. Annual angular reflection losses in PV modules , 2005 .
[3] Manuel Fuentes,et al. Characterisation of Si-crystalline PV modules by artificial neural networks , 2009 .
[4] Pedro Pérez-Higueras,et al. Calculation of the energy provided by a PV generator. Comparative study: Conventional methods vs. artificial neural networks , 2011 .
[5] Martin A. Green,et al. A new method for accurate measurements of the lumped series resistance of solar cells , 1993, Conference Record of the Twenty Third IEEE Photovoltaic Specialists Conference - 1993 (Cat. No.93CH3283-9).
[6] N. Martín,et al. A new method for the spectral characterisation of PV modules , 1999 .
[7] K. Emery,et al. Uncertainty Analysis of Certified Photovoltaic Measurements at the National Renewable Energy Laboratory , 2009 .
[8] Carl R. Osterwald,et al. Procedure for determining the uncertainty of photovoltaic module outdoor electrical performance ‡ , 2001 .
[9] Kashif Ishaque,et al. Simple, fast and accurate two-diode model for photovoltaic modules , 2011 .
[10] L. Hontoria,et al. Characterisation of PV CIS module by artificial neural networks. A comparative study with other methods , 2010 .
[11] Kousuke Kurokawa,et al. Reflection loss analysis by optical modeling of PV module , 2001 .
[12] R. Hanitsch,et al. Actual optical and thermal performance of PV-modules , 1995 .
[13] Kashif Ishaque,et al. An improved two-diode photovoltaic (PV) model for PV system , 2010, 2010 Joint International Conference on Power Electronics, Drives and Energy Systems & 2010 Power India.
[14] Keith Emery,et al. Spectral effects on PV-device rating , 1992 .
[15] Jean-Pierre Charles,et al. A critical study of the effectiveness of the single and double exponential models for I–V characterization of solar cells , 1985 .
[16] A. Kapoor,et al. Exact analytical solutions of the parameters of real solar cells using Lambert W-function , 2004 .
[17] M. Chegaar,et al. A simpler method for extracting solar cell parameters using the conductance method , 1999 .
[18] C. Riordan,et al. PV device performance calculations from measured indoor and outdoor spectra , 1984 .
[19] Wim Turkenburg,et al. Crystalline silicon cell performance at low light intensities , 2009 .
[20] S. Kurtz,et al. The influence of spectral solar irradiance variations on the performance of selected single-junction and multijunction solar cells , 1991 .
[21] M. Saad,et al. Analysis of multi-crystalline silicon solar cells at low illumination levels using a modified two-diode model , 2010 .
[22] Y. Hamakawa,et al. Effect of atmospheric parameters on solar cell performance under global irradiance , 1986 .
[23] Bo Li,et al. Implementation and Validation of Sandia Outdoor Photovoltaic Test Method and Performance Model at Arizona State University , 2006, 2006 IEEE 4th World Conference on Photovoltaic Energy Conference.
[24] N. Martín,et al. Calculation of the PV modules angular losses under field conditions by means of an analytical model , 2001 .
[25] L. Hontoria,et al. Estimation of the energy of a PV generator using artificial neural network , 2009 .
[26] G. Bunea,et al. Low Light Performance of Mono-Crystalline Silicon Solar Cells , 2006, 2006 IEEE 4th World Conference on Photovoltaic Energy Conference.
[27] Naum Fraidenraich,et al. Exact solutions for multilayer optical structures. , 2000 .
[28] J. Hay,et al. Estimating Solar Irradiance on Inclined Surfaces: A Review and Assessment of Methodologies , 1985 .
[29] Karim S. Karim,et al. Low light conditions modelling for building integrated photovoltaic (BIPV) systems , 2004 .
[30] Wim Turkenburg,et al. A simple model for PV module reflection losses under field conditions , 1996 .
[31] H. R. Wilson,et al. Energetic relevance of solar spectral variation on solar cell short circuit current , 1989 .
[32] J. L. Balenzategui,et al. Measurement and analysis of angular response of bare and encapsulated silicon solar cells , 2005 .
[33] R. Mueller. The calculated influence of atmospheric conditions on solar cell ISC under direct and global solar irradiances , 1987 .
[34] J. Jervase,et al. Solar cell parameter extraction using genetic algorithms , 2001 .
[35] H. H. Safwat,et al. Determination of the optimum orientations for the double-exposure, flat-plate collector and its reflectors , 1966 .
[36] M. C. Gonzalez,et al. Solar cells efficiency variations with varying atmospheric conditions , 1994 .
[37] Ken-ichi Funahashi,et al. On the approximate realization of continuous mappings by neural networks , 1989, Neural Networks.
[38] M. Bashahu,et al. Review and test of methods for determination of the solar cell series resistance , 1995 .
[39] M. Drif,et al. Univer Project. A grid connected photovoltaic system of 200kWp at Jaén University. Overview and performance analysis , 2007 .
[40] O. Heavens,et al. Optical properties of thin films — Where to? , 1978 .
[41] A. Parretta,et al. Effects of solar irradiation conditions on the outdoor performance of photovoltaic modules , 1998 .
[42] Pedro Pérez-Higueras,et al. Analysis of the Energy of a PV Generator Using Artificial Neural Network , 2009 .
[43] Steve Ransome. Comparing PV simulation models and methods with outdoor measurements , 2010, 2010 35th IEEE Photovoltaic Specialists Conference.
[44] S. Ransome. Modelling inaccuracies of PV energy yield simulations , 2008, 2008 33rd IEEE Photovoltaic Specialists Conference.
[45] C. Osterwald. TRANSLATION OF DEVICE PERFORMANCE MEASUREMENTS TO REFERENCE CONDITIONS , 1986 .