A non-destructive measurement technique is presented which yields cell parameters of individual solar cells of a photovoltaic module. Our method is based on the quantitative analysis of voltage dependent electroluminescence images together with the current-voltage-characteristic of the complete module. As a result, we obtain the ideality factors n(1,2) and loss current densities J(01,02) of individual cells connected in series. The applicability of our approach is demonstrated on numerical and experimental data
Electroluminescence (EL) is a useful solar cell and photovoltaic module characterisation technique a...
All previous methods for quantitatively evaluating photoluminescence (PL) images of solar cells assu...
This article proposes a method for quantifying the percentage of partially and totally disconnected ...
AbstractA non-destructive measurement technique is presented which yields cell parameters of individ...
In this work, a non-destructive, automated procedure to extract the I-V characteristics of individua...
Electroluminescence (EL) images are normally used for qualitative analysis of photovoltaic (PV) modu...
Electroluminescence (EL) imaging has become an important quality control tool in maximizing module m...
We demonstrate a method to quantify the extent of solar cell cracks, shunting, or damaged cell inter...
Electroluminescence (EL) is a powerful tool for the qualitative mapping of the electronic properties...
This thesis presents six methods to improve the characterisation of solar cells via photoluminescenc...
This article proposes a method for quantifying the percentage of partially and totally disconnected ...
Luminescence imaging has found wide application for the characterization of silicon solar cells and ...
In this paper we give a mathematical derivation of how luminescence images of silicon solar cells ca...
A technique for fast quantitative determination of the different terms contributing to series resist...
A simple method of obtaining single cell dark I-V curves in a photovoltaic module was developed. The...
Electroluminescence (EL) is a useful solar cell and photovoltaic module characterisation technique a...
All previous methods for quantitatively evaluating photoluminescence (PL) images of solar cells assu...
This article proposes a method for quantifying the percentage of partially and totally disconnected ...
AbstractA non-destructive measurement technique is presented which yields cell parameters of individ...
In this work, a non-destructive, automated procedure to extract the I-V characteristics of individua...
Electroluminescence (EL) images are normally used for qualitative analysis of photovoltaic (PV) modu...
Electroluminescence (EL) imaging has become an important quality control tool in maximizing module m...
We demonstrate a method to quantify the extent of solar cell cracks, shunting, or damaged cell inter...
Electroluminescence (EL) is a powerful tool for the qualitative mapping of the electronic properties...
This thesis presents six methods to improve the characterisation of solar cells via photoluminescenc...
This article proposes a method for quantifying the percentage of partially and totally disconnected ...
Luminescence imaging has found wide application for the characterization of silicon solar cells and ...
In this paper we give a mathematical derivation of how luminescence images of silicon solar cells ca...
A technique for fast quantitative determination of the different terms contributing to series resist...
A simple method of obtaining single cell dark I-V curves in a photovoltaic module was developed. The...
Electroluminescence (EL) is a useful solar cell and photovoltaic module characterisation technique a...
All previous methods for quantitatively evaluating photoluminescence (PL) images of solar cells assu...
This article proposes a method for quantifying the percentage of partially and totally disconnected ...