The present work aims to evaluate, from both technical and economical point of view, the employment of storage systems for time shifting applications in two different medium scale wind turbines actually operating in Apulia. In fact, storage technologies are currently considered the most reliable way to sensibly increase the penetration of renewable sources into the energy market, balancing their intrinsic variability. On this matter, this work analyses the technical and economical effects of introducing an electrochemical storage system to mitigate the loss of revenues caused by a curtailment in the power output of the wind turbine, in order to avoid grid congestions. The analysis shows that there is no economic return for storage systems in peak shaving applications actually, as the use of batteries just to time-shift energy does not guarantee sufficient remunerations. The key for a massive integration of storage systems with renewable energy could be guaranteed by their utilisation for grid support and stabilisation, opening the ancillary services market also to renewables rather than conventional plants.

Feasibility analysis of storage systems in wind plants - an Italian application

Leva, Sonia
2017-01-01

Abstract

The present work aims to evaluate, from both technical and economical point of view, the employment of storage systems for time shifting applications in two different medium scale wind turbines actually operating in Apulia. In fact, storage technologies are currently considered the most reliable way to sensibly increase the penetration of renewable sources into the energy market, balancing their intrinsic variability. On this matter, this work analyses the technical and economical effects of introducing an electrochemical storage system to mitigate the loss of revenues caused by a curtailment in the power output of the wind turbine, in order to avoid grid congestions. The analysis shows that there is no economic return for storage systems in peak shaving applications actually, as the use of batteries just to time-shift energy does not guarantee sufficient remunerations. The key for a massive integration of storage systems with renewable energy could be guaranteed by their utilisation for grid support and stabilisation, opening the ancillary services market also to renewables rather than conventional plants.
2017
Conference Proceedings - 2017 17th IEEE International Conference on Environment and Electrical Engineering and 2017 1st IEEE Industrial and Commercial Power Systems Europe, EEEIC / I and CPS Europe 2017
9781538639160
Energy backup; Energy storage; Integrated systems; Renewable energy integration; Storage systems; Wind power; Energy Engineering and Power Technology; Electrical and Electronic Engineering; Industrial and Manufacturing Engineering; Environmental Engineering
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1042196
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