Energy models based on optimization principles are valuable tools for optimizing the design elements and the operating strategies of multiple distributed energy systems (DES). Such models, commonly formulated as Mixed-Integer Linear Programs (MILP), achieve a good trade-off between model accuracy and computational complexity. However, the latter aspect depends heavily on the number of variables. Hence, problems can become intractable when large spatial or temporal resolutions are considered. In this paper, the focus is placed on the temporal dimension and different representations of it are evaluated. The model is solved for a full year in hourly time-steps, for a set of optimally-selected typical days, and, finally, using a rolling horizon...
Energy system design should take into account the hourly, daily and seasonal variations of both the ...
AbstractResearch regarding the optimal planning of distributed generation is often based on coarse e...
International audienceOptimizing an energy system model featuring a large proportion of variable (no...
To limit the computational cost, bottom-up long-term (LT) energy-system planning models typically ha...
International audienceThe paper proposes a strategy for the time horizon reduction in power and ener...
Due to computational restrictions, bottom-up energy-system planning models typically represent intra...
Due to computational constraints, power system planning models are typically unable to incorporate f...
A critical result of the analysis of multi energy systems (MES) is that, when optimizing their desig...
Modelling and optimising modern energy systems is inherently complex and often requires methods to s...
AbstractEnergy hub model is a powerful concept allowing the interactions of many energy conversion a...
Long-term energy systems often simplify temporal detail resolution. However, this simplification is ...
Energy system optimization models used for capacity expansion and dispatch planning are established ...
When optimizing the design of multi-energy systems, the operation strategy and the part-load behavio...
This dissertation focuses on energy system optimization models (ESOMs). These models are used to gen...
Optimal design and operation of multi-energy systems involving seasonal energy storage are often hin...
Energy system design should take into account the hourly, daily and seasonal variations of both the ...
AbstractResearch regarding the optimal planning of distributed generation is often based on coarse e...
International audienceOptimizing an energy system model featuring a large proportion of variable (no...
To limit the computational cost, bottom-up long-term (LT) energy-system planning models typically ha...
International audienceThe paper proposes a strategy for the time horizon reduction in power and ener...
Due to computational restrictions, bottom-up energy-system planning models typically represent intra...
Due to computational constraints, power system planning models are typically unable to incorporate f...
A critical result of the analysis of multi energy systems (MES) is that, when optimizing their desig...
Modelling and optimising modern energy systems is inherently complex and often requires methods to s...
AbstractEnergy hub model is a powerful concept allowing the interactions of many energy conversion a...
Long-term energy systems often simplify temporal detail resolution. However, this simplification is ...
Energy system optimization models used for capacity expansion and dispatch planning are established ...
When optimizing the design of multi-energy systems, the operation strategy and the part-load behavio...
This dissertation focuses on energy system optimization models (ESOMs). These models are used to gen...
Optimal design and operation of multi-energy systems involving seasonal energy storage are often hin...
Energy system design should take into account the hourly, daily and seasonal variations of both the ...
AbstractResearch regarding the optimal planning of distributed generation is often based on coarse e...
International audienceOptimizing an energy system model featuring a large proportion of variable (no...