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Two-diode model revisited: parameters extraction from semi-log plots of i-v data

Yordanov, G. H., Midtg?rd, O. M. and Saetre, T. O.
2010
25th European Photovoltaic Solar Energy Conference and Exhibition / 5th World Conference on Photovoltaic Energy Conversion, 6-10 September 2010, Valencia, Spain
Module Series Resistance, p-n Junction Ideality Factor, Polycrystalline Silicon


Yordanov, G. H., Midtg?rd, O. M. and Saetre, T. O., (2010), "Two-diode model revisited: parameters extraction from semi-log plots of i-v data", 25th European Photovoltaic Solar Energy Conference and Exhibition / 5th World Conference on Photovoltaic Energy Conversion, 6-10 September 2010, Valencia, Spain.
Abstract:
This paper presents an improved method to extract physically meaningful parameters from outdoor I-V data of polycrystalline-Si PV modules. The two-diode model of a PV cell is adapted for modules. A novel algorithm is devised to estimate the series resistance from I-V data sets. The ideality factor and the reverse saturation current of the diffusion diodes are then calculated from partially linear semi-logarithmic plots. The complexity and ambiguity typical for non-linear curve fitting are thus avoided. The method is applied to outdoor I-V curves from polycrystalline-Si modules, and preliminary results are presented. A new definition of the local ideality factor is introduced. It compensates for the series-resistance effect at higher voltages, such that a constant ideality factor is obtained for polycrystalline-Si modules in this range of voltages.

Keywords:


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Author Information and Other Publications Notes
Yordanov, G. H.
  1. An improved modeling method to determine the model parameters of photovoltaic (PV) modules using differential evolution (DE)  
Midtg?rd, O. M.
  1. An improved modeling method to determine the model parameters of photovoltaic (PV) modules using differential evolution (DE)  
Saetre, T. O.
  1. An improved modeling method to determine the model parameters of photovoltaic (PV) modules using differential evolution (DE)  



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