Talk:Open energy system models

Latest comment: 12 days ago by RobbieIanMorrison in topic open_eGo: open electricity Grid optimization

open_eGo: open electricity Grid optimization

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This project can be added when it goes live at the end of August 2016. RobbieIanMorrison (talk) 16:39, 21 July 2016 (UTC)Reply

  Done. RobbieIanMorrison (talk) 12:05, 26 September 2016 (UTC)Reply
The project seems to have been removed. It was clearly present at one point as indicated. In any case, the project is now known as oGon. RobbieIanMorrison (talk) 09:11, 18 October 2024 (UTC)Reply

Split page in due course: Open energy systems data

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Given that open energy system data projects are on the increase, this page could be split in due course to yield a new Open energy systems data page. RobbieIanMorrison (talk) 12:05, 26 September 2016 (UTC)Reply

  Done. Please see Open energy system databases. RobbieIanMorrison (talk) 10:47, 4 February 2017 (UTC)Reply

Spanish wholesale power market data

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The following Spanish initiative could be a possible addition to the open data section in due course. Best wishes. RobbieIanMorrison (talk) 20:32, 5 October 2016 (UTC)Reply

  • "PriceProfor Engine: Iniciativa abierta para el modelado, el análisis y la explotación de datos de precios del Mercado mayorista eléctrico Español" [PriceProfor Engine: open initiative for modeling, analysis, and exploitation of price data from the Spanish wholesale power market] (in Spanish). Retrieved 2016-10-05.
  Not done. Shifted comment to the open energy system databases article. RobbieIanMorrison (talk) 10:56, 4 February 2017 (UTC)Reply



Further models

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Open energy system modeling projects that could be added in due course
Project Model type Academic publications License details Code published Comments
AMIRIS java-based agent-based modeling framework Apache 2.0 GitLab to add
COMANDO python modeling framework beyond MILP MIT GitLab instance to add
CREST spreadsheet-based micro-energy system model CC BY-ND 3.0 cannot add, the ND variant is not an open license
DDPP spreadsheet-based energy system model no not specified
deeco high-resolution energy system modeling framework GPLv2 to add   (although project abandoned 2005)
Einstein single-site analysis GPLv3 to add
EnergyNumbers–
Balancing
interactive electricity system model no GLPv3
energyRt model from United States written in R no AGPLv3.0 need to confirm license status
FINE Framework for Integrated Energy System Assessment MIT GitHub to add
FlexTool Power system flexibility for the energy transition LGPLv3+ request access to add
Friendly Sam energy system optimization toolbox not known LGLPv3 GitHub license needs to be added to codebase
GCAM Global Change Analysis Model IAM ECL-2.0 GCAM Core to add
GENeSYS-MOD global energy system model (based on OSeMOSYS) Apache 2.0 GitLab instance to add
GnuAE GNU alternative household energy systems no GLPv2 to add
GridCal Research oriented power system software LGPLv3 GitHub
GridPath Versatile power-system planning platform Apache 2.0 GitHub to add
Grid Sim browser based public education model Apache 2.0 GitHub to add   (an initiative by google)
highRES GAMS-based model for Great Britain and Europe MIT GitHub to add
M-LED multi-sectoral latent electricity demand platform MIT GitHub to add
mat-dp material demand projections model MIT GitHub to add
MultiMod large-scale equilibrium model of global energy markets not specified not yet first top-down model?
OMEGAlpes district scale model Apache 2.0 GitLab
open_plan decentralized systems with emphasis on built environment no AGPLv3 GitHub
OpPoDyn research on the dynamics of networks and power grids GPLv3 GitHub to add
PLEXOS Open EU based on proprietary PLEXOS software not specified not yet
PowSyBl Power System Blocks no MPL-2.0 GitHub to add
Rogeaulito projected accounting model for global energy not specified publication indicates open license, have emailed the developers
Spine energy system model to add
SpineOpt energy system model to add
StELMOD stochastic optimization model for European electricity markets MIT to add
TIMES Model Generator framework maintained by ETSAP GPL‑3.0‑or‑later to add
WWS project based at Standford University MIT to add
  • Academic publications: pending or published academic literature or the presence of secondary sources is used as a criteria for inclusion in the article.
  • License details: projects must specify their license first (spreadsheet projects are prone to not doing so).
  • Code published: lists projects that have indicated their intention to make their code public but have not yet done so.
  • Blank cells indicate an affirmative.


Change log


References

  1. ^ Platt, John C; Pritchard, J Orion; Bryant, Drew (8 August 2017). "Analyzing energy technologies and policies using DOSCOE". Available at SSRN. SSRN 3015424. Retrieved 2017-10-02. 24 pages. Describes the Grid Sim model.
  2. ^ Chang, Miguel; Thellufsen, Jakob Zink; Zakeri, Behnam; Pickering, Bryn; Pfenninger, Stefan; Lund, Henrik; Østergaard, Poul Alberg (15 May 2021). "Trends in tools and approaches for modelling the energy transition". Applied Energy. 290: 116731. doi:10.1016/j.apenergy.2021.116731. ISSN 0306-2619. Retrieved 2021-05-08.  
  3. ^ Satheeskumar, Aravind (7 September 2020). Open source model of the Nordic Power System for EU Project Spine (PDF). Stockholm, Sweden: School of Electrical Engineering and Computer Science, KTH Royal Institute of Technology. Retrieved 2021-01-27.
  4. ^ Welder, Lara; Ryberg, D Severin; Kotzur, Leander; Grube, Thomas; Robinius, Martin; Stolten, Detlef (1 September 2018). "Spatio-temporal optimization of a future energy system for power-to-hydrogen applications in Germany". Energy. 158: 1130–1149. doi:10.1016/j.energy.2018.05.059. ISSN 0360-5442.  
  5. ^ Göke, Leonard (1 November 2021). "A graph-based formulation for modeling macro-energy systems". Applied Energy. 301: 117377. doi:10.1016/j.apenergy.2021.117377. ISSN 0306-2619. Retrieved 2021-08-11.
  6. ^ Zozmann, Elmar; Göke, Leonard; Kendziorski, Mario; Rodriguez del Angel, Citlali; von Hirschhausen, Christian; Winkler, Johanna (January 2021). "100% renewable energy scenarios for North America—spatial distribution and network constraints". Energies. 14 (3): 658. doi:10.3390/en14030658. ISSN 1996-1073. Retrieved 2021-08-12.{{cite journal}}: CS1 maint: unflagged free DOI (link)  
  7. ^ "open_plan". Retrieved 2021-09-08.
  8. ^ Langiu, Marco; Shu, David Yang; Baader, Florian Joseph; Hering, Dominik; Bau, Uwe; Xhonneux, André; Müller, Dirk; Bardow, André; Mitsos, Alexander; Dahmen, Manuel (1 September 2021). "COMANDO: a next-generation open-source framework for energy systems optimization". Computers & Chemical Engineering. 152: 107366. arXiv:2102.02057. doi:10.1016/j.compchemeng.2021.107366. ISSN 0098-1354. Retrieved 2021-11-02.  
  9. ^ Linux Foundation. "Power System Blocks". Linux Foundation. San Francisco, California, USA. Retrieved 2021-11-16.
  10. ^ Hodencq, Sacha; Brugeron, Mathieu; Fitó, Jaume; Morriet, Lou; Delinchant, Benoit; Wurtz, Frédéric (January 2021). "OMEGAlpes, an open-source optimisation model generation tool to support energy stakeholders at district scale". Energies. 14 (18): 5928. doi:10.3390/en14185928. ISSN 1996-1073. Retrieved 2022-04-03.{{cite journal}}: CS1 maint: unflagged free DOI (link)
  11. ^ Falchetta, Giacomo; Stevanato, Nicolò; Moner‑Girona, Magda; Mazzoni, Davide; Colombo, Emanuela; Hafner, Manfred (July 2021). "The M-LED platform: advancing electricity demand assessment for communities living in energy poverty". Environmental Research Letters. 16 (7): 074038. doi:10.1088/1748-9326/ac0cab. ISSN 1748-9326. Retrieved 2022-01-20.
  12. ^ Löffler, Konstantin; Hainsch, Karlo; Burandt, Thorsten; Kemfert, Claudia; von Hirschhausen, Christian (2017). "Designing a model for the global energy system — GENeSYS-MOD: an application of the Open-Source Energy Modeling System (OSeMOSYS)" (PDF). Energies. 10 (1468). doi:10.3390/en10101468. ISSN 1996-1073. Retrieved 2018-05-09.{{cite journal}}: CS1 maint: unflagged free DOI (link)
  13. ^ Bartholdsen, Hans-Karl; Eidens, Anna; Löffler, Konstantin; Seehaus, Frederik; Wejda, Felix; Burandt, Thorsten; Oei, Pao-Yu; Kemfert, Claudia; von Hirschhausen, Christian (January 2019). "Pathways for Germany's low-carbon energy transformation towards 2050". Energies. 12 (15): 2988. doi:10.3390/en12152988. ISSN 1996-1073. Retrieved 2019-08-05.{{cite journal}}: CS1 maint: unflagged free DOI (link)  
  14. ^ Taibi, Emanuele; Nikolakakis, Thomas; Gutierrez, Laura; Fernandez, Carlos; Kiviluoma, Juha; Lindroos, Tomi J; Rissanen, Simo (November 2018). Power system flexibility for the energy transition: Part II: IRENA FlexTool methodology (PDF). Abu Dhabi: International Renewable Energy Agency (IRENA). ISBN 978-92-9260-089-1. Retrieved 2021-05-07.
  15. ^ Ihlemann, Maren; Kouveliotis-Lysikatos, Iasonas; Huang, Jiangyi; Dillon, Joseph; O’Dwyer, Ciara; Rasku, Topi; Marin, Manuel; Poncelet, Kris; Kiviluoma, Juha (1 September 2022). "SpineOpt: a flexible open-source energy system modelling framework". Energy Strategy Reviews. 43: 100902. doi:10.1016/j.esr.2022.100902. ISSN 2211-467X. Retrieved 2022-07-28.  
  16. ^ Barron, Karla Cervantes; Cullen, Jonathan M (22 August 2022). "Mat-dp: an open-source python model for analysing material demand projections and their environmental implications, which result from building low-carbon systems". Journal of Open Source Software. 7 (76): 4460. doi:10.21105/joss.04460. ISSN 2475-9066. Retrieved 2022-09-06.  
  17. ^ Bergero, Candelaria; Binsted, Matthew; Younis, Osama; Davies, Evan G R; Siddiqui, Muhammad-Shahid; Xing, Rui; Arbuckle, Evan J; Chiappori, Diego V; Fuhrman, Jay; McJeon, Haewon; Macaluso, Nick (1 May 2022). "Technology, technology, technology: an integrated assessment of deep decarbonization pathways for the Canadian oil sands". Energy Strategy Reviews. 41: 100804. doi:10.1016/j.esr.2022.100804. ISSN 2211-467X. Retrieved 2022-10-04.
  18. ^ Morrison, Robbie (19 February 2023). "Update on the TIMES ecosystem". Open Energy Modelling Initiative. Germany. Retrieved 2023-02-21. Blog.  
  19. ^ UCL (4 June 2018). "highRES". UCL Energy Institute. London, United Kingdom. Retrieved 2024-08-26.
  20. ^ Plietzsch, Anton; Kogler, Raphael; Auer, Sabine; Merino, Julia; Gil-de-Muro, Asier; Liße, Jan; Vogel, Christina; Hellmann, Frank (1 January 2022). "PowerDynamics.jl — An experimentally validated open-source package for the dynamical analysis of power grids". SoftwareX. 17: 100861. doi:10.1016/j.softx.2021.100861. ISSN 2352-7110. Retrieved 2024-08-31.