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Model: OSeMOSYS Coverage: Global Type: Energy and electricity system model IAM COMPACT partner: KTH Royal Institute of Technology, Stockholm The Open Source energy MOdelling SYStem is a fully (data to solver) open source long-term bottom-up (technology rich) optimisation framework for energy systems modelling. It calculates for every year of a time domain the energy mix (in terms of capacity, capacity expansion and operation) that minimised the total Net Present Costs of the whole system while meeting exogenously defined demands for energy commodities or services and while complying with constraints dictated by resource availability, technical characteristics of technologies, policies. It is a partial equilibrium modelling tool. It can be used both with perfect or myopic foresight. It allows high temporal (up to hourly) and spatial resolution. It has been coupled with several other modelling tools. Its modelling paradigm is very close to MESSAGE's and quite similar to TIMES's. It is also the optimisation engine of LEAP (NEMO is a Julia translation of OSeMOSYS). Given its fully open-source nature, the availability of several interfaces with different degrees of technicality, the availability in three modelling languages (Pyhon, GNU MathProg and GAMS) and the fast learning curve, it is largely used in capacity development and education activities.