AbstractMonitoring the I-V parameters in mass production yields a distribution that cannot be understood in a simple manner. For example, if Voc varies greatly, it is not obvious whether this is mainly due to variations in the bulk lifetime or in the surface passivation or due to other sources.In this work, we develop a method where statistics is combined with numerical device modeling to obtain a physical interpretation of the observed variations. In the first part, we derive a multivariate statistical model to extract the main influences of fabrication fluctuations on the I-V parameters. This statistical model is based on cell parameters measured on a representative sample of solar cells from production. In the second part, we develop a c...
The aggregation (sorting) of the individual solar cells into an array is commonly based on a single ...
This paper investigates the influence of laterally inhomogeneous cell parameters on solar cell effic...
In this paper we measure, spatially resolved, the efficiency potential of multicrystalline material....
Monitoring the I-V parameters in mass production yields a distribution that cannot be understood in ...
We present an approach to model the distribution of solar cell efficiencies achieved in production l...
We present an approach for examining and understanding the impact of material and process variations...
In this work, we thoroughly investigate the impact of parameter and process variations in an industr...
AbstractIn this paper we present a novel approach to investigate the influence of non-uniformity in ...
This paper introduces and explains a simulation-assisted approach for determining and ranking the mo...
This paper presents an experimental study of the variation in the performance of silicon solar cells...
Solar cell production always requires a tradeoff between cell efficiency and production costs. This ...
AbstractWe present a model for predicting the solar cell efficiency potential of multicrystalline si...
The aim of the work is to compare the model of monocrystalline silicon solar cell in PC1D with the r...
AbstractSilicon photovoltaic cells are subject to a range of material, optical and electrical influe...
AbstractA model is developed for simulating the inhomogeneity of front metal fingers and its influen...
The aggregation (sorting) of the individual solar cells into an array is commonly based on a single ...
This paper investigates the influence of laterally inhomogeneous cell parameters on solar cell effic...
In this paper we measure, spatially resolved, the efficiency potential of multicrystalline material....
Monitoring the I-V parameters in mass production yields a distribution that cannot be understood in ...
We present an approach to model the distribution of solar cell efficiencies achieved in production l...
We present an approach for examining and understanding the impact of material and process variations...
In this work, we thoroughly investigate the impact of parameter and process variations in an industr...
AbstractIn this paper we present a novel approach to investigate the influence of non-uniformity in ...
This paper introduces and explains a simulation-assisted approach for determining and ranking the mo...
This paper presents an experimental study of the variation in the performance of silicon solar cells...
Solar cell production always requires a tradeoff between cell efficiency and production costs. This ...
AbstractWe present a model for predicting the solar cell efficiency potential of multicrystalline si...
The aim of the work is to compare the model of monocrystalline silicon solar cell in PC1D with the r...
AbstractSilicon photovoltaic cells are subject to a range of material, optical and electrical influe...
AbstractA model is developed for simulating the inhomogeneity of front metal fingers and its influen...
The aggregation (sorting) of the individual solar cells into an array is commonly based on a single ...
This paper investigates the influence of laterally inhomogeneous cell parameters on solar cell effic...
In this paper we measure, spatially resolved, the efficiency potential of multicrystalline material....