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Abstract
Fast and accurate large-scale energy system models are needed to investigate the potential of storage to complement the fluctuating energy production of renewable energy systems. However, standard Mixed-Integer Programming (MIP) models that describe optimal investment and operation of these storage units, including the optional capacity to provide up/down reserves, do not scale well. To improve scalability, the integrality constraints are often relaxed, resulting in Linear Programming (LP) relaxations that allow simultaneous charging and discharging, while this is not feasible in practice. To address this, we derive the convex hull of the solutions for the optimal operation of storage for one time period, as well as for problems including investments and reserves, guaranteeing that no tighter MIP formulation or better LP approximation exists for one time period. When incorporating this convex hull into a multi-period formulation and including it in large-scale energy system models, the improved LP relaxations can better prevent simultaneous charging and discharging, and the tighter MIP could positively affect the solving time. We demonstrate this with illustrative case studies of a unit commitment problem and a transmission expansion planning problem.
| Original language | English |
|---|---|
| Pages (from-to) | 2428-2440 |
| Number of pages | 13 |
| Journal | IEEE Transactions on Power Systems |
| Volume | 41 |
| Issue number | 4 |
| DOIs | |
| Publication status | Published - 2026 |
| MoE publication type | A1 Journal article-refereed |
Funding
The work of Germán Morales-España and Juha Kiviluoma was supported by European Climate, Infrastructure and Environment Executive Agency through European Union’s HORIZON Research and Innovation Actions under Grant Agreement 101095998 (Mopo). The work of Niina Helistö was supported by European Union’s Horizon 2020 research and innovation program under Grant Agreement 864276 (TradeRES). This work was supported in part by Dutch Research Council (NWO), through Energy Systems Integration (ESI-far) program, under Project ESI.2019.008, and in part by eScienceCenter under Project NLeSC C 21.0226.
Keywords
- convex hull
- Energy storage systems
- linear programming (LP)
- mixed-integer linear programming (MIP)
- optimal investments
- reserves
- tight formulation
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MOPO: Comprehensive, fast, user-friendly and thoroughly validated open-source energy system planning framework
Kiviluoma, J. (PI), Helistö, N. (PI), Rasku, T. (Participant), Soininen, A. (Participant), Savolainen, P. T. (Participant), Ikäheimo, J. (Participant), Putkonen, N. (Participant), Louis, J.-N. (Participant) & Gutierrez, A. W. (Participant)
1/01/23 → 31/12/26
Project: EU project
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TradeRES: New Markets Design & Models for 100% Renewable Power Systems
Helistö, N. (Manager), Kiviluoma, J. (Manager), Harrison, E. (Participant), Soininen, A. (Participant), Savolainen, P. T. (Participant), Similä, L. (Participant), Koreneff, G. (Participant), Rinne, E. (Participant), Rasku, T. (Participant) & Putkonen, N. (Participant)
1/02/20 → 30/11/24
Project: EU project
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