Gamma-Robust electricity market equilibrium models with transmission and generation investments

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Date

2021, 2021

Authors

Çelebi, Emre
Krebs, Vanessa
Schmidt, Martin

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Publisher

SPRINGER HEIDELBERG

Open Access Color

HYBRID

Green Open Access

Yes

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No
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Abstract

We consider uncertain robust electricity market equilibrium problems including transmission and generation investments. Electricity market equilibrium modeling has a long tradition but is, in most of the cases, applied in a deterministic setting in which all data of the model are known. Whereas there exist some literature on stochastic equilibrium problems, the field of robust equilibrium models is still in its infancy. We contribute to this new field of research by considering Gamma-robust electricity market equilibrium models on lossless DC networks with transmission and generation investments. We state the nominal market equilibrium problem as a mixed complementarity problem as well as its variational inequality and welfare optimization counterparts. For the latter, we then derive a Gamma-robust formulation and show that it is indeed the counterpart of a market equilibrium problem with robustified player problems. Finally, we present two case studies to gain insights into the general effects of robustification on electricity market models. In particular, our case studies reveal that the transmission system operator tends to act more risk-neutral in the robust setting, whereas generating firms clearly behave more risk-averse.

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Keywords

Robust optimization, Robust market equilibria, Electricity market equilibrium models, Transmission and generation investment, Perfect competition, Robust market equilibria, Electricity market equilibrium models, ddc:330, Transmission and generation investment, Robust optimization, Perfect competition, 90Bxx, 90Cxx, 90C33, 90C90, 91B50, DDC Classification::6 Technik, Medizin, angewandte Wissenschaften :: 60 Technik :: 600 Technik, Technologie

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Fields of Science

0211 other engineering and technologies, 02 engineering and technology

Citation

WoS Q

Q4

Scopus Q

Q2
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OpenCitations Citation Count
2

Source

Energy Systems

Volume

14

Issue

Start Page

759

End Page

786
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CrossRef : 1

Scopus : 6

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Mendeley Readers : 22

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6

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Web of Science™ Citations

6

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Page Views

21

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Downloads

630

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