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Line 40: |
| |Observation period=Less than one month, Less than one year, More than one year | | |Observation period=Less than one month, Less than one year, More than one year |
| |math_modeltype=Optimization, Simulation, Other | | |math_modeltype=Optimization, Simulation, Other |
| + | |math_objective=Economic welfare at spot, reeserve, and emission markets in Europe |
| |is_suited_for_many_scenarios=No | | |is_suited_for_many_scenarios=No |
| |number_of_variables=100000000 | | |number_of_variables=100000000 |
Revision as of 19:58, 15 September 2019
Maon
by Maon GmbH
Authors: Mihail Ketov, Fabian Pfannes, Huangluolun Zhou, Dariush Wahdany, Nicolai Schmid
Contact: Dr.-Ing. Mihail Ketov
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Based on C++. Using Kubernetes, MinIO, MongoDB, Preact, Node.js, GraphQL, Python, WebAssembly, GCC, cURL, OpenMPI for data processing.
[www.mano.eu Website / Documentation]
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Not Open Source
Not directly downloadable
No data shipped
Not planned to open up further in the future
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Model Scope |
Model type and solution approach |
Model class
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Mixed-Integer Quadratic Programming (MIQP)
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Sectors
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Electricity plus sector couplings (industry, heat, transport, gas)
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Technologies
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Renewables, Conventional Generation, CHP
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Decisions
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dispatch
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Regions
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Members of ENTSO-E
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Geographic Resolution
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Individual power stations
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Time resolution
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Hour
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Network coverage
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transmission, distribution, AC load flow, DC load flow, net transfer capacities
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Model type
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Optimization, Simulation, Other
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Variables
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100000000
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Computation time
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1500 minutes
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Objective
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Economic welfare at spot, reeserve, and emission markets in Europe
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Uncertainty modeling
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Suited for many scenarios / monte-carlo
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No
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References
Scientific references
Ketov, Mihail (2019). "Marktsimulationen unter Berücksichtigung der Strom-Wärme-Sektorenkopplung", Print Production, PhD thesis, RWTH Aachen University.
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