Previous studies with fixed operating temperatures have shown that hydrogenated amorphous silicon (a-Si:H) was a promising absorber layer for solar photovoltaic–thermal (PVT) systems because of (a) a low temperature coefficient and (b) the opportunity to reverse light induced degradation with thermal annealing. This study further refined the simulation of the optimal dispatch strategy for a-Si:H based PVT by studying annealing cycles and analysis of the degradation at other operating temperatures controlled by the varying ambient temperatures. Four representative case studies were evaluated for the combinations of high and low solar flux and high and low average ambient temperature. Electrically-optimized dispatch strategies are found for a...
The influences of temperature on the performance of amorphous silicon (a-Si) solar cells and photovo...
Amorphous silicon photovoltaic/thermal (a-Si-PV/T) technology is promising due to the low power temp...
The effects of temperature and radiation intensity on the performance parameters of amorphous hydrog...
Previous studies with fixed operating temperatures have shown that hydrogenated amorphous silicon (a...
International audiencePrevious studies with fixed operating temperatures have shown that hydrogenate...
Previous studies with fixed operating temperatures have shown that hydrogenated amorphous silicon (a...
Previous work has shown that high-temperature short-term spike thermal annealing of hydrogenated amo...
International audienceThe effects of dispatch strategy on electrical performance of amorphous silico...
There is a renewed interest in photovoltaic solar thermal (PVT) hybrid systems, which harvest solar ...
Historically, the design of hybrid solar photovoltaic thermal (PVT) systems has focused on cooling c...
Historically, the design of hybrid solar photovoltaic thermal (PVT) systems has focused on cooling c...
There is a renewed interest in photovoltaic solar thermal (PVT) hybrid systems, which harvest solar ...
Amorphous silicon (a-Si) cells are able to perform better as temperature increases due to the effect...
The influences of temperature on the performance of amorphous silicon (a-Si) solar cells and photovo...
Amorphous silicon photovoltaic/thermal (a-Si-PV/T) technology is promising due to the low power temp...
The effects of temperature and radiation intensity on the performance parameters of amorphous hydrog...
Previous studies with fixed operating temperatures have shown that hydrogenated amorphous silicon (a...
International audiencePrevious studies with fixed operating temperatures have shown that hydrogenate...
Previous studies with fixed operating temperatures have shown that hydrogenated amorphous silicon (a...
Previous work has shown that high-temperature short-term spike thermal annealing of hydrogenated amo...
International audienceThe effects of dispatch strategy on electrical performance of amorphous silico...
There is a renewed interest in photovoltaic solar thermal (PVT) hybrid systems, which harvest solar ...
Historically, the design of hybrid solar photovoltaic thermal (PVT) systems has focused on cooling c...
Historically, the design of hybrid solar photovoltaic thermal (PVT) systems has focused on cooling c...
There is a renewed interest in photovoltaic solar thermal (PVT) hybrid systems, which harvest solar ...
Amorphous silicon (a-Si) cells are able to perform better as temperature increases due to the effect...
The influences of temperature on the performance of amorphous silicon (a-Si) solar cells and photovo...
Amorphous silicon photovoltaic/thermal (a-Si-PV/T) technology is promising due to the low power temp...
The effects of temperature and radiation intensity on the performance parameters of amorphous hydrog...