A practical optimization design is proposed, in which the solar direct light spectrum and multijunction cell response range are taken into account in combination, particularly for the Fresnel concentrators with a high concentration and a small aspect ratio. In addition, the change of refractive index due to temperature variation in outdoor operation conditions is also considered in the design stage. The calculation results show that this novel Fresnel lens achieves an enhancement of energy efficiency of about 10% compared with conventional Fresnel lens for a given solar spectrum, solar cell response, and corrected sunshine hours of different ambient temperature intervals
At present, the Fresnel lens are commonly used as the condenser in high-concentrating photovoltaic (...
The goal of this presented study was to determine the optimum parameters of secondary optical elemen...
This work is aimed to design and evaluate different achromatic Fresnel lens solutions capable of ope...
Different designs have been presented to achieve high concentration and uniformity for the concentra...
Solar energy has been a field or well-known topics that take place in the industry as it is very rel...
Solar energy concentration technology using Fresnel lens is an effective way to make full use of sun...
ngle concentrator to homogenize and concentrate the solar energy. The proposed of an array of refrac...
Concentrating photovoltaic technology harnesses solar energy by increasing the solar density upon so...
Nowadays, building-integrated solar systems (i.e. photovoltaic modules installed directly in the fa&...
Recent investigations of Fresnel lens concentrator optics have shown that optical efficiency and mod...
The paper presents a novel Fresnel lens for concentrator photovoltaic (CPV) technologies with reduce...
This paper investigates the potential of a new integrated solar concentrated photovoltaic (CPV) syst...
Recent investigations of Fresnel lens concentrator optics have shown that optical efficiency and mod...
This paper presents a new design of a planar solar concentrator with spectral splitting of light for...
The goal of this presented study was to determine the optimum parameters of secondary optical elemen...
At present, the Fresnel lens are commonly used as the condenser in high-concentrating photovoltaic (...
The goal of this presented study was to determine the optimum parameters of secondary optical elemen...
This work is aimed to design and evaluate different achromatic Fresnel lens solutions capable of ope...
Different designs have been presented to achieve high concentration and uniformity for the concentra...
Solar energy has been a field or well-known topics that take place in the industry as it is very rel...
Solar energy concentration technology using Fresnel lens is an effective way to make full use of sun...
ngle concentrator to homogenize and concentrate the solar energy. The proposed of an array of refrac...
Concentrating photovoltaic technology harnesses solar energy by increasing the solar density upon so...
Nowadays, building-integrated solar systems (i.e. photovoltaic modules installed directly in the fa&...
Recent investigations of Fresnel lens concentrator optics have shown that optical efficiency and mod...
The paper presents a novel Fresnel lens for concentrator photovoltaic (CPV) technologies with reduce...
This paper investigates the potential of a new integrated solar concentrated photovoltaic (CPV) syst...
Recent investigations of Fresnel lens concentrator optics have shown that optical efficiency and mod...
This paper presents a new design of a planar solar concentrator with spectral splitting of light for...
The goal of this presented study was to determine the optimum parameters of secondary optical elemen...
At present, the Fresnel lens are commonly used as the condenser in high-concentrating photovoltaic (...
The goal of this presented study was to determine the optimum parameters of secondary optical elemen...
This work is aimed to design and evaluate different achromatic Fresnel lens solutions capable of ope...