The Zero Energy Building (ZEB) target and the higher affordability of photovoltaic (PV) systems are pushing Governments and large Companies operating in electricity generation and distribution network management to develop tools able to better define the potential productivity of PV systems on a large scale, such as solar maps. However, solar maps mainly consider phenomena related to weather and geometry, with a low level of detail on second order effects. This research aims at the integration of additional technical aspects into solar maps, by means of diagrams able to increase the reliability in the assessment of potential electricity generation. For this purpose, more technical factors are taken into account, such as the variation of PV panel efficiency with cell temperature, the shadow cast by the preceding PV panel array, here including the action of by-pass diodes, and the ratio of active area over the area available for installation.

Calculation procedure to improve the assessment of photovoltaic generation in solar maps

Schibuola, Luigi;Scarpa, Massimiliano;Tambani, Chiara
2017-01-01

Abstract

The Zero Energy Building (ZEB) target and the higher affordability of photovoltaic (PV) systems are pushing Governments and large Companies operating in electricity generation and distribution network management to develop tools able to better define the potential productivity of PV systems on a large scale, such as solar maps. However, solar maps mainly consider phenomena related to weather and geometry, with a low level of detail on second order effects. This research aims at the integration of additional technical aspects into solar maps, by means of diagrams able to increase the reliability in the assessment of potential electricity generation. For this purpose, more technical factors are taken into account, such as the variation of PV panel efficiency with cell temperature, the shadow cast by the preceding PV panel array, here including the action of by-pass diodes, and the ratio of active area over the area available for installation.
2017
International Conference on Future Buildings and Districts - Energy Efficiency from Nano to Urban Scale, CISBAT 2017
Inglese
122
475
480
6
Elsevier
Amsterdam
PAESI BASSI
International Conference on Future Buildings and Districts - Energy Efficiency from Nano to Urban Scale, CISBAT 2017
6-8 September 2017
Lausanne
Internazionale
no
contributo
Comitato scientifico
https://www.sciencedirect.com/science/article/pii/S187661021732893X
PV generation, solar maps, by-pass diode
no
open
info:eu-repo/semantics/conferenceObject
3
3. Contributo in atti di convegno (Proceedings)::3.1 Contributo in atti di convegno
Schibuola, Luigi; Scarpa, Massimiliano; Tambani, Chiara
273
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11578/277203
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