Accelerated Spatially Resolved Electrical Simulation of Photovoltaic Devices Using Photovoltaic-Oriented Nodal Analysis
暂无分享,去创建一个
[2] Thomas R. Betts,et al. Spatially distributed model for the analysis of laser beam induced current (LBIC) measurements of thin film silicon solar modules , 2011 .
[3] T. Fuyuki,et al. Photographic surveying of minority carrier diffusion length in polycrystalline silicon solar cells by electroluminescence , 2005 .
[4] Bart E. Pieters. A free and open source finite-difference simulation tool for solar modules , 2014, 2014 IEEE 40th Photovoltaic Specialist Conference (PVSC).
[5] James Demmel,et al. Applied Numerical Linear Algebra , 1997 .
[6] Thomas R. Betts,et al. Distributed electrical network modelling approach for spatially resolved characterisation of photovoltaic modules , 2014 .
[7] Johnson Wong. Griddler: Intelligent computer aided design of complex solar cell metallization patterns , 2013, 2013 IEEE 39th Photovoltaic Specialists Conference (PVSC).
[8] B. E. Pieters. Spatial Modeling of Thin-Film Solar Modules Using the Network Simulation Method and SPICE , 2011, IEEE Journal of Photovoltaics.
[9] T. Walter,et al. 2D network simulation and luminescence characterization of Cu(In,Ga)Se2 thin film modules , 2012 .
[10] W. Marsden. I and J , 2012 .
[11] Marius Peters,et al. Investigating Local Inhomogeneity Effects of Silicon Wafer Solar Cells by Circuit Modelling , 2013 .
[12] David S. Watkins,et al. Fundamentals of matrix computations , 1991 .
[13] David Infield,et al. Effect of cell width on the device performance of amorphous silicon solar cells , 2004 .
[14] Kenji Araki,et al. Novel equivalent circuit model and statistical analysis in parameters identification , 2003 .
[15] IMPACT OF LATERAL VARIATIONS ON THE SOLAR CELL EFFICIENCY , 2010 .
[16] Charles R. Johnson,et al. Matrix analysis , 1985, Statistical Inference for Engineers and Data Scientists.
[17] J. Shewchuk. An Introduction to the Conjugate Gradient Method Without the Agonizing Pain , 1994 .
[18] David Hinken,et al. Quantitative Luminescence Characterization of Crystalline Silicon Solar Cells , 2013 .
[19] David Infield,et al. The influence of the measurement environment on the accuracy of the extraction of the physical parameters of solar cells , 1999 .
[20] S. Eidelloth,et al. Simulation Tool for Equivalent Circuit Modeling of Photovoltaic Devices , 2012, IEEE Journal of Photovoltaics.
[21] Jürgen H. Werner,et al. Modeling of spatially inhomogeneous solar cells by a multi‐diode approach , 2005 .
[22] K. A. Stroud,et al. Engineering Mathematics , 2020, Nature.
[23] Otwin Breitenstein,et al. Quantitative evaluation of shunts in solar cells by lock‐in thermography , 2003 .
[24] B. Galiana,et al. A 3-D model for concentrator solar cells based on distributed circuit units , 2005, IEEE Transactions on Electron Devices.
[25] P. Altermatt,et al. 19% Efficient Thin-Film Crystalline Silicon Solar Cells From Layer Transfer Using Porous Silicon: A Loss Analysis by Means of Three-Dimensional Simulations , 2012, IEEE Transactions on Electron Devices.
[26] Yousef Saad,et al. Iterative methods for sparse linear systems , 2003 .
[27] Hayato Kondo,et al. Analytic findings in the electroluminescence characterization of crystalline silicon solar cells , 2007 .
[28] Ron M. Kielkowski. Inside SPICE , 1994 .
[29] H. Föll,et al. CELLO: an advanced LBIC measurement technique for solar cell local characterization , 2003 .
[30] M. Abbott,et al. Suns-photoluminescence: Contactless determination of current-voltage characteristics of silicon wafers , 2005 .