AbstractSolar cell models implemented in simulation packages (for example Sentaurus TCAD) are typically restricted either to only one or two dimensions, or to small scales. They therefore neglect effects of local inhomogeneities or large scale phenomena such as lateral transport to fingers or busbars. In this paper, we use a distributed circuit model to investigate lateral inhomogeneity effects on silicon wafer solar cells. The circuit is constructed of different unit elements based on the one-diode model. To calculate the characteristics of the circuit, we use the freely available software LTspice IV (Linear Technology Corp). The presented model is used to simulate the distributed current flow in a solar cell. First, the design of the dist...
AbstractIn this paper we introduce a quasi 3-D electrical model for a high efficiency interdigitated...
The performance of solar modules is strongly influenced by the presence of local defects (shunts) in...
The present work concerns the analysis of high-efficient silicon solar cells using experiments and m...
Solar cell models implemented in simulation packages (for example Sentaurus TCAD) are typically rest...
AbstractLocal inhomogeneity effects such as shunts, inhomogeneous sheet resistance and inhomogeneous...
An optimised quasi 3D network model of a solar cell has been developed. The network consists of resi...
The present work is related to effects originating from the spatial character and therefore referrin...
In this paper, we analyze the effect of local shunts in photovoltaic (PV) solar cells by experimenta...
In this paper we propose a three-dimensional (3-D) distributed electrical network for the modelling ...
A 2.5-D distributed circuit model for concentrator silicon solar cells has been developed in order t...
Laterally inhomogeneous cell parameters in large-scale perovskite/silicon (PSC/Si) tandem solar cell...
This paper investigates the influence of laterally inhomogeneous cell parameters on solar cell effic...
In this paper we introduce a quasi 3-D electrical model for a high efficiency interdigitated back co...
AbstractThis article reports on amorphous silicon solar cells on plastic foils in the substrate conf...
The paper presents the results of investigation on the influence of an ohmic shunt located at variou...
AbstractIn this paper we introduce a quasi 3-D electrical model for a high efficiency interdigitated...
The performance of solar modules is strongly influenced by the presence of local defects (shunts) in...
The present work concerns the analysis of high-efficient silicon solar cells using experiments and m...
Solar cell models implemented in simulation packages (for example Sentaurus TCAD) are typically rest...
AbstractLocal inhomogeneity effects such as shunts, inhomogeneous sheet resistance and inhomogeneous...
An optimised quasi 3D network model of a solar cell has been developed. The network consists of resi...
The present work is related to effects originating from the spatial character and therefore referrin...
In this paper, we analyze the effect of local shunts in photovoltaic (PV) solar cells by experimenta...
In this paper we propose a three-dimensional (3-D) distributed electrical network for the modelling ...
A 2.5-D distributed circuit model for concentrator silicon solar cells has been developed in order t...
Laterally inhomogeneous cell parameters in large-scale perovskite/silicon (PSC/Si) tandem solar cell...
This paper investigates the influence of laterally inhomogeneous cell parameters on solar cell effic...
In this paper we introduce a quasi 3-D electrical model for a high efficiency interdigitated back co...
AbstractThis article reports on amorphous silicon solar cells on plastic foils in the substrate conf...
The paper presents the results of investigation on the influence of an ohmic shunt located at variou...
AbstractIn this paper we introduce a quasi 3-D electrical model for a high efficiency interdigitated...
The performance of solar modules is strongly influenced by the presence of local defects (shunts) in...
The present work concerns the analysis of high-efficient silicon solar cells using experiments and m...