Self-scheduling for energy and spinning reserve of wind/CSP plants by a MILP approach

This paper is on the self-scheduling for a power producer taking part in day-ahead joint energy and spinning reserve markets and aiming at a short-term coordination of wind power plants with concentrated solar power plants having thermal energy storage. The short-term coordination is formulated as a...

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Veröffentlicht in:Energy (Oxford) 2014-12, Vol.78, p.524-534
Hauptverfasser: Pousinho, H.M.I., Silva, H., Mendes, V.M.F., Collares-Pereira, M., Pereira Cabrita, C.
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Sprache:eng
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Zusammenfassung:This paper is on the self-scheduling for a power producer taking part in day-ahead joint energy and spinning reserve markets and aiming at a short-term coordination of wind power plants with concentrated solar power plants having thermal energy storage. The short-term coordination is formulated as a mixed-integer linear programming problem given as the maximization of profit subjected to technical operation constraints, including the ones related to a transmission line. Probability density functions are used to model the variability of the hourly wind speed and the solar irradiation in regard to a negative correlation. Case studies based on an Iberian Peninsula wind and concentrated solar power plants are presented, providing the optimal energy and spinning reserve for the short-term self-scheduling in order to unveil the coordination benefits and synergies between wind and solar resources. Results and sensitivity analysis are in favour of the coordination, showing an increase on profit, allowing for spinning reserve, reducing the need for curtailment, increasing the transmission line capacity factor. •Optimal self-scheduling of wind power with CSP plants having TES.•Joint model for trading energy and SR.•Evaluation of the benefit of wind power with CSP plants having TES.•Identification of synergies due to the negative correlation between wind and solar power.
ISSN:0360-5442
DOI:10.1016/j.energy.2014.10.039