Efficiency imaging of solar cells means to know which region of an inhomogeneous cell contributes by which degree to the efficiency at maximum power point of the cell. This knowledge allows us to judge how strong certain defect regions influence the efficiency of the whole cell. Efficiency imaging can be performed based on dark lock-in thermography (DLIT) imaging within the model of independent diodes, or based on illuminated lock-in thermography (ILIT), which does not assume any cell model. Moreover, by 2-dimensional finite element simulation of the cell based on DLIT results, an efficiency image can be obtained, which takes into account the distributed nature of the series resistance. In this contribution these three methods are applied t...
The spatially resolved evaluation of power losses in solar cells is a key issue in identifying techn...
The principles of a recently introduced measurement technique for power losses in solar cells, illum...
Spatially resolved determination of solar cell parameters is beneficial for loss analysis and optimi...
AbstractBoth dark lock-in thermography (DLIT) and photoluminescence (PL) imaging deliver information...
Abstract Both dark lock-in thermography (DLIT) and photoluminescence (PL) imaging deliver informatio...
Until now the Dark Lock-in Thermography (DLIT) based "Local I-V" method for analyzing the inhomogene...
The application of the model of independent diodes with an effective series resistance in units of Ω...
ABSTRACT: The local efficiency parameters of readily processed solar cells can be investigated both ...
AbstractIn this contribution two methods for performing local efficiency analysis of solar cells are...
Illuminated Lock-In Thermography (ILIT) was introduced as a further development of Dark Lock-In Ther...
In this contribution two methods for performing local efficiency analysis of solar cells are compare...
Spatially resolved electroluminescence (EL) and photoluminescence (PL) images of solar cells are com...
This work presents a method to extract the spatial distributions of local two-diode parameters, cont...
This paper shows that the combination of both dark lock-in thermography (DLIT) and electroluminescen...
Illuminated Lock-In Thermography (ILIT) is a versatile tool for spatially resolved detection of powe...
The spatially resolved evaluation of power losses in solar cells is a key issue in identifying techn...
The principles of a recently introduced measurement technique for power losses in solar cells, illum...
Spatially resolved determination of solar cell parameters is beneficial for loss analysis and optimi...
AbstractBoth dark lock-in thermography (DLIT) and photoluminescence (PL) imaging deliver information...
Abstract Both dark lock-in thermography (DLIT) and photoluminescence (PL) imaging deliver informatio...
Until now the Dark Lock-in Thermography (DLIT) based "Local I-V" method for analyzing the inhomogene...
The application of the model of independent diodes with an effective series resistance in units of Ω...
ABSTRACT: The local efficiency parameters of readily processed solar cells can be investigated both ...
AbstractIn this contribution two methods for performing local efficiency analysis of solar cells are...
Illuminated Lock-In Thermography (ILIT) was introduced as a further development of Dark Lock-In Ther...
In this contribution two methods for performing local efficiency analysis of solar cells are compare...
Spatially resolved electroluminescence (EL) and photoluminescence (PL) images of solar cells are com...
This work presents a method to extract the spatial distributions of local two-diode parameters, cont...
This paper shows that the combination of both dark lock-in thermography (DLIT) and electroluminescen...
Illuminated Lock-In Thermography (ILIT) is a versatile tool for spatially resolved detection of powe...
The spatially resolved evaluation of power losses in solar cells is a key issue in identifying techn...
The principles of a recently introduced measurement technique for power losses in solar cells, illum...
Spatially resolved determination of solar cell parameters is beneficial for loss analysis and optimi...