We determine the uncertainties on simulated efficiencies of silicon solar cells due to uncertainties of the fundamental physical models. To determine these, we refit their parameters to the underlying measurement data. Using a metamodeling and Monte Carlo simulation approach, we then deduce how these propagate to the simulated solar cell efficiency. This is evaluated for 150-μm-thick 1 Qcm p-type standard and advanced silicon passivated emitter and rear cells (PERC), as well as for an ideal silicon solar cell. When sticking to the best-known set of physical models, we determine resulting efficiency uncertainties as low as 0.06% abs for usual PERC cells and 0.1% abs for an ideal cell. In a variance-based sensitivity analysis, we find the unc...
AbstractIn this work we compare experimental results of an industrial passivated emitter and rear ce...
In this work, we thoroughly investigate the impact of parameter and process variations in an industr...
AbstractSilicon photovoltaic cells are subject to a range of material, optical and electrical influe...
We present an approach to model the distribution of solar cell efficiencies achieved in production l...
Recently, several parameters relevant for modeling crystalline silicon solar cells were improved or ...
The improvement of solar cell efficiency requires device optimization, including the careful design ...
Numerical modelling is pivotal in the development of high efficiency solar cells. In this contributi...
We present an approach for examining and understanding the impact of material and process variations...
We introduce an approach to analyze and identify the predominant loss mechanisms in silicon solar ce...
We present an approach to analyze and identify the predominant loss mechanisms in silicon solar cell...
Investigating the effect of device dimension on the silicon solar cell, by using the PC1D numerical ...
AbstractPassivated Emitter and Rear Cells (PERC) with efficiencies well above 20% are likely to beco...
Simulation model of solar cell device is developed to investigate the optimization of conversion eff...
The rapid development of novel solar cell concepts requires an accurate and reliable modeling to obt...
Solar cell production always requires a tradeoff between cell efficiency and production costs. This ...
AbstractIn this work we compare experimental results of an industrial passivated emitter and rear ce...
In this work, we thoroughly investigate the impact of parameter and process variations in an industr...
AbstractSilicon photovoltaic cells are subject to a range of material, optical and electrical influe...
We present an approach to model the distribution of solar cell efficiencies achieved in production l...
Recently, several parameters relevant for modeling crystalline silicon solar cells were improved or ...
The improvement of solar cell efficiency requires device optimization, including the careful design ...
Numerical modelling is pivotal in the development of high efficiency solar cells. In this contributi...
We present an approach for examining and understanding the impact of material and process variations...
We introduce an approach to analyze and identify the predominant loss mechanisms in silicon solar ce...
We present an approach to analyze and identify the predominant loss mechanisms in silicon solar cell...
Investigating the effect of device dimension on the silicon solar cell, by using the PC1D numerical ...
AbstractPassivated Emitter and Rear Cells (PERC) with efficiencies well above 20% are likely to beco...
Simulation model of solar cell device is developed to investigate the optimization of conversion eff...
The rapid development of novel solar cell concepts requires an accurate and reliable modeling to obt...
Solar cell production always requires a tradeoff between cell efficiency and production costs. This ...
AbstractIn this work we compare experimental results of an industrial passivated emitter and rear ce...
In this work, we thoroughly investigate the impact of parameter and process variations in an industr...
AbstractSilicon photovoltaic cells are subject to a range of material, optical and electrical influe...