Flexibility Options in 100% Renewable Energy World Regions
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Designing the energy systems for high variable renewable energy penetrations, one should look for the flexibility of an energy systems that may be provided from various sources at supply, demand or network level. The flexibility can be provided from different options including, but not limiting to: (1) electricity demand (household and industry), (2) thermal (power, CHP) plants, (3) power to heat (CHP, heat pump district/individual), (4) transport (V2G + smart charge, synthetic fuels), (5) interconnection and (6) storage (batteries, pumped hydro, rockbed, compressed air, hydrogen…). The flexibility might be provided according to different criteria: economics, technical complexity, utilization, acceptability, feasibility, material use. Further, different constraints regarding percentages, shares, emission reductions… might be set according to proclaimed sustainable energy policy in certain region. Therefore, we will simulate various flexibility options according to their availability an...d priority assumed by authors for each region of nine World regions (USMCA, Latin America, United Kingdom, China, Russia, South-East Asia and Oceania, Rest of the world, ) using EnergyPLAN-Python permutation framework . This way number of synthetically generated temporary scenarios before finding optimal one and the execution time is increased in comparison to optimization approach.
Keywords:
energy systems / renewable energy / energy policies / energy transitionSource:
Proceedings of 16th Conference on Sustainable Development of Energy, Water and Environment Systems – SDEWES, 2020, 0064-Publisher:
- Zagreb : SDEWES
Funding / projects:
- LOCOMOTION, funded through European Union's Horizon 2020 research and innovation programme, Grant No. 821105
Institution/Community
Институт техничких наука САНУ / Institute of Technical Sciences of SASATY - CONF AU - Batas-Bjelić, Ilija AU - Rajaković, Nikola AU - Pfeifer, Antun AU - Herc, Luka AU - Duić, Neven PY - 2020 UR - https://dais.sanu.ac.rs/123456789/12288 AB - Designing the energy systems for high variable renewable energy penetrations, one should look for the flexibility of an energy systems that may be provided from various sources at supply, demand or network level. The flexibility can be provided from different options including, but not limiting to: (1) electricity demand (household and industry), (2) thermal (power, CHP) plants, (3) power to heat (CHP, heat pump district/individual), (4) transport (V2G + smart charge, synthetic fuels), (5) interconnection and (6) storage (batteries, pumped hydro, rockbed, compressed air, hydrogen…). The flexibility might be provided according to different criteria: economics, technical complexity, utilization, acceptability, feasibility, material use. Further, different constraints regarding percentages, shares, emission reductions… might be set according to proclaimed sustainable energy policy in certain region. Therefore, we will simulate various flexibility options according to their availability and priority assumed by authors for each region of nine World regions (USMCA, Latin America, United Kingdom, China, Russia, South-East Asia and Oceania, Rest of the world, ) using EnergyPLAN-Python permutation framework . This way number of synthetically generated temporary scenarios before finding optimal one and the execution time is increased in comparison to optimization approach. PB - Zagreb : SDEWES C3 - Proceedings of 16th Conference on Sustainable Development of Energy, Water and Environment Systems – SDEWES T1 - Flexibility Options in 100% Renewable Energy World Regions SP - 0064 UR - https://hdl.handle.net/21.15107/rcub_dais_12288 ER -
@conference{ author = "Batas-Bjelić, Ilija and Rajaković, Nikola and Pfeifer, Antun and Herc, Luka and Duić, Neven", year = "2020", abstract = "Designing the energy systems for high variable renewable energy penetrations, one should look for the flexibility of an energy systems that may be provided from various sources at supply, demand or network level. The flexibility can be provided from different options including, but not limiting to: (1) electricity demand (household and industry), (2) thermal (power, CHP) plants, (3) power to heat (CHP, heat pump district/individual), (4) transport (V2G + smart charge, synthetic fuels), (5) interconnection and (6) storage (batteries, pumped hydro, rockbed, compressed air, hydrogen…). The flexibility might be provided according to different criteria: economics, technical complexity, utilization, acceptability, feasibility, material use. Further, different constraints regarding percentages, shares, emission reductions… might be set according to proclaimed sustainable energy policy in certain region. Therefore, we will simulate various flexibility options according to their availability and priority assumed by authors for each region of nine World regions (USMCA, Latin America, United Kingdom, China, Russia, South-East Asia and Oceania, Rest of the world, ) using EnergyPLAN-Python permutation framework . This way number of synthetically generated temporary scenarios before finding optimal one and the execution time is increased in comparison to optimization approach.", publisher = "Zagreb : SDEWES", journal = "Proceedings of 16th Conference on Sustainable Development of Energy, Water and Environment Systems – SDEWES", title = "Flexibility Options in 100% Renewable Energy World Regions", pages = "0064", url = "https://hdl.handle.net/21.15107/rcub_dais_12288" }
Batas-Bjelić, I., Rajaković, N., Pfeifer, A., Herc, L.,& Duić, N.. (2020). Flexibility Options in 100% Renewable Energy World Regions. in Proceedings of 16th Conference on Sustainable Development of Energy, Water and Environment Systems – SDEWES Zagreb : SDEWES., 0064. https://hdl.handle.net/21.15107/rcub_dais_12288
Batas-Bjelić I, Rajaković N, Pfeifer A, Herc L, Duić N. Flexibility Options in 100% Renewable Energy World Regions. in Proceedings of 16th Conference on Sustainable Development of Energy, Water and Environment Systems – SDEWES. 2020;:0064. https://hdl.handle.net/21.15107/rcub_dais_12288 .
Batas-Bjelić, Ilija, Rajaković, Nikola, Pfeifer, Antun, Herc, Luka, Duić, Neven, "Flexibility Options in 100% Renewable Energy World Regions" in Proceedings of 16th Conference on Sustainable Development of Energy, Water and Environment Systems – SDEWES (2020):0064, https://hdl.handle.net/21.15107/rcub_dais_12288 .
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