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  4. Using GIS data and satellite-derived irradiance to optimize siting of PV installations in Switzerland
 
conference poster not in proceedings

Using GIS data and satellite-derived irradiance to optimize siting of PV installations in Switzerland

Kahl, Annelen  
•
Dujardin, Jerome  
•
Bartlett, Stuart
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2016
EGU 2016

For a successful distribution strategy of PV installations, it does not suffice to choose the locations with highest annual total irradiance. Attention needs to be given to spatial correlation patterns of insolation to avoid large system-wide variations, which can cause extended deficits in supply or might even damage the electrical network. One alternative goal instead is to seek configurations that provide the smoothest energy production, with the most reliable and predictable supply. Our work investigates several scenarios, each pursuing a different strategy for a future renewable Switzerland without nuclear power. Based on an estimate for necessary installed capacity for solar power we first use heuristics to pre-select realistic placements for PV installations. Then we apply optimization methods to find a subset of locations that provides the best possible combined electricity production. Depending on the initial assumptions and constraints, the resulting distribution schemes for PV installations vary with respect to required surface area, annual total and lowest short-term production, and illustrate how important it is to clearly define priorities and policies for a future renewable Switzerland.

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Type
conference poster not in proceedings
Author(s)
Kahl, Annelen  
Dujardin, Jerome  
Bartlett, Stuart
Lehning, Michael  
Sossan, Fabrizio  
Nguyen, Viet-Anh
Date Issued

2016

Subjects

Renewable Energies

•

Solar Energy

•

GIS

•

Irradiance

•

Satellite Imagery

•

MeteoSat Second Generation

•

Swiss Energy Strategy 2050

Written at

EPFL

EPFL units
CRYOS  
DESL  
RAO  
Event nameEvent placeEvent date
EGU 2016

Vienna, Austria

17-22, 2016

Available on Infoscience
April 26, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/125892
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