2020
DOI: 10.36227/techrxiv.12465230.v1
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Operational planning of large-scale energy systems with high share of renewable generation

Abstract: <div>This paper proposes a mathematical model to perform optimal operational planning of large-scale energy systems with high share of renewable energy. Furthermore, it analyses the influence of different unit commitment modelling approaches on the operational planning outcomes. The value of co-optimisation of electricity and heating sector is emphasized in this paper. The results show the influence of massive renewable penetration in the energy sector towards 2050, and how this influences generation fr… Show more

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Cited by 3 publications
(3 citation statements)
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“…Due to the complexity of the problem, integer variables are relaxed and for each day, only 1 every 4 hours is used. More details about this method are shown in [36].…”
Section: Long-term Operational Decisions Optimisationmentioning
confidence: 99%
See 1 more Smart Citation
“…Due to the complexity of the problem, integer variables are relaxed and for each day, only 1 every 4 hours is used. More details about this method are shown in [36].…”
Section: Long-term Operational Decisions Optimisationmentioning
confidence: 99%
“…When planned maintenance is optimised, the units will be forced to be inoperative during a specific amount of consecutive time steps. More details can be found in [36]. Storage units modelling.…”
Section: Acknowledgmentsmentioning
confidence: 99%
“…General description of the model Balmorel [24] is a flexible-structure, deterministic, bottom-up, energy-system model. In the recent years, Balmorel has been greatly developed by including more capabilities that allow for higher detail in the modelling of the operation of the system [25], and including more sectors [7]. The Balmorel energy system model and corresponding data are open source and can be accessed in [26] and [27] respectively.…”
Section: Methodology and Datamentioning
confidence: 99%