per Fornitura di energia pulita (Sistema di produzione di energia)
Solare
Fotovoltaico
Pannelli fotovoltaici
Elettricità
AC
Agricoltura in pieno campo, Bestiame, Serre
Contadino, Associazione di produttori, Aziende, Industria
Fornitura di energia (ad es. elettricità)
Elettricità
Software, Hardware, Metodologia, Soluzione completa
Acronimo del progetto: PVCROPS
Tipo di finanziamento del progetto: EU
Fonte di finanziamento del progetto: FP7
Coordinatore del progetto: UNIVERSIDAD POLITECNICA DE MADRID
Posizione del coordinatore: Spagna
Email del coordinatore / Modulo di contatto: info@pvcrops.eu
Status del progetto: Finito
Budget totale: 5395951.4
The integration of batteries in to PV systems contributes to mitigating PV power fluctuations. Newly developed hardware and software can interact with smart grids to manage PV energy flows and optimise control strategies. The technology should allow the sale of electricity at peak-demand prices to be maximised by time shifting the power generation to injection into the electricity grid. PVCROPS also developed a novel toolbox for predicting PV power fluctuations.
Novel quality control procedures and kit solutions for the testing and commissioning of PV plants should help ensure PV plant profitability.
Last but not least, researchers developed a web platform that provides hourly solar irradiation data all over Europe."
"The main objectives of PV CROPS are:
1- Reduction of 30% of the LCoE of PV to achieve 0.14-0.07 €/kWh by 2020 and 0.20–0.09 €/kWh by 2015 and an increase of 9% in the performance ratio of PV systems
2- Enhancement of the grid integration of PV by mitigating PV power fluctuations and integrating energy management and storage to allow 30% of PV penetration by 2020
The objectives are attained through 5 fields of work.
1) Robust modelling, advanced simulation and design optimization: through an open source, simulation and design toolbox incorporating built-in learning tools
2) Prediction of system output with respect to solar resource, local weather and system behaviour: including prediction and mitigation of PV power fluctuations
3) Integration of energy management and storage strategies: using innovative batteries and allowing PV to participate in the secondary regulation of the grid.
4) Monitoring, real time follow-up and advanced diagnoses of performance: providing performance analyses including the detection of hidden problems reducing operational costs.
5) Hardware, software and contractual solutions for field and laboratory testing: developing kit solutions for the commissioning of PV plants and BIPV.
PV CROPS includes 19 results: technical documents, toolbox solutions, technology development, databases, training and spin-offs. The results will be validated on a wide set of EU PV systems, and in one of the biggest PV plants in EU and one of the biggest one in the world under project in Morocco."
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