Variable time-step: A method for improving computational tractability for energy system models with long-term storage
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DOI: 10.1016/j.energy.2020.119024
Note: View the original document on HAL open archive server: https://hal.science/hal-03100309
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- de Guibert, Paul & Shirizadeh, Behrang & Quirion, Philippe, 2020. "Variable time-step: A method for improving computational tractability for energy system models with long-term storage," Energy, Elsevier, vol. 213(C).
References listed on IDEAS
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- ZareAfifi, Farzan & Mahmud, Zabir & Kurtz, Sarah, 2023. "Diurnal, physics-based strategy for computationally efficient capacity-expansion optimizations for solar-dominated grids," Energy, Elsevier, vol. 279(C).
- Shirizadeh, Behrang & Quirion, Philippe, 2022.
"Do multi-sector energy system optimization models need hourly temporal resolution? A case study with an investment and dispatch model applied to France,"
Applied Energy, Elsevier, vol. 305(C).
- Philippe Quirion & Behrang Shirizadeh, 2022. "Do multi-sector energy system optimization models need hourly temporal resolution? A case study with an investment and dispatch model applied to France," Post-Print hal-03495892, HAL.
- Teichgraeber, Holger & Küpper, Lucas Elias & Brandt, Adam R., 2021. "Designing reliable future energy systems by iteratively including extreme periods in time-series aggregation," Applied Energy, Elsevier, vol. 304(C).
- Klemm, Christian & Wiese, Frauke & Vennemann, Peter, 2023. "Model-based run-time and memory reduction for a mixed-use multi-energy system model with high spatial resolution," Applied Energy, Elsevier, vol. 334(C).
- Wang, Jing & Kang, Lixia & Liu, Yongzhong, 2022. "A multi-objective approach to determine time series aggregation strategies for optimal design of multi-energy systems," Energy, Elsevier, vol. 258(C).
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More about this item
Keywords
Energy system model; renewable energies; computational tractability; time series aggregation; complexity reduction;All these keywords.
NEP fields
This paper has been announced in the following NEP Reports:- NEP-CMP-2021-06-21 (Computational Economics)
- NEP-ENE-2021-06-21 (Energy Economics)
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