For the solar energy industry to increase its competitiveness there is a global drive to lower the cost of solar generated electricity. Photovoltaic (PV) module assembly is material-demanding and the cover glass constitutes a significant proportion of the cost. Currently, 3 mm thick glass is the predominant cover material for PV modules, accounting for 10-25% of the total cost. Here we review the state-of-the-art of cover glasses for PV modules and present our recent results for improvement of the glass. These improvements were demonstrated in terms of mechanical, chemical and optical properties by optimizing the glass composition, including addition of novel dopants, to produce cover glasses that can provide: (i) enhanced UV protection of ...
Masteroppgave i fornybar energi ENE500 2013 – Universitetet i Agder, GrimstadA novel approach to pre...
Solar photovoltaic (PV) technology has a great potential to enable zero energy homes. To enable more...
The Photovoltaic (PV) system converts only a selected band (0.35μm to 0.82 μm) of solar radiation to...
For the solar energy industry to increase its competitiveness, there is a global drive to lower the ...
Harvesting of solar energy through photovoltaic (PV) modules is an essential technology for increasi...
Harvesting of solar energy through photovoltaic (PV) modules is an essential technology for increasi...
Photovoltaic systems have become recently the most attractive and promising technology compared with...
The majority of the photovoltaic (PV) modules used in building skins contains glass, but does not en...
In photovoltaics, the cover glass module has hitherto not yet been fully optimized for its purpose. ...
This report summarizes work on improving solar cell conversion efficiencies by modifying the cell co...
A novel approach to predict the performance of anti-reflective glasses on PV panel is presented in t...
Masteroppgave i fornybar energi ENE500 2013 – Universitetet i Agder, GrimstadA novel approach to pre...
The presence of soiling on photovoltaic modules reduces light transmission through the front cover g...
The presence of soiling on photovoltaic modules reduces light transmission through the front cover g...
The presence of soiling on photovoltaic modules reduces light transmission through the front cover g...
Masteroppgave i fornybar energi ENE500 2013 – Universitetet i Agder, GrimstadA novel approach to pre...
Solar photovoltaic (PV) technology has a great potential to enable zero energy homes. To enable more...
The Photovoltaic (PV) system converts only a selected band (0.35μm to 0.82 μm) of solar radiation to...
For the solar energy industry to increase its competitiveness, there is a global drive to lower the ...
Harvesting of solar energy through photovoltaic (PV) modules is an essential technology for increasi...
Harvesting of solar energy through photovoltaic (PV) modules is an essential technology for increasi...
Photovoltaic systems have become recently the most attractive and promising technology compared with...
The majority of the photovoltaic (PV) modules used in building skins contains glass, but does not en...
In photovoltaics, the cover glass module has hitherto not yet been fully optimized for its purpose. ...
This report summarizes work on improving solar cell conversion efficiencies by modifying the cell co...
A novel approach to predict the performance of anti-reflective glasses on PV panel is presented in t...
Masteroppgave i fornybar energi ENE500 2013 – Universitetet i Agder, GrimstadA novel approach to pre...
The presence of soiling on photovoltaic modules reduces light transmission through the front cover g...
The presence of soiling on photovoltaic modules reduces light transmission through the front cover g...
The presence of soiling on photovoltaic modules reduces light transmission through the front cover g...
Masteroppgave i fornybar energi ENE500 2013 – Universitetet i Agder, GrimstadA novel approach to pre...
Solar photovoltaic (PV) technology has a great potential to enable zero energy homes. To enable more...
The Photovoltaic (PV) system converts only a selected band (0.35μm to 0.82 μm) of solar radiation to...