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Journal article ยท Ahead of Print article

Consensus-based Approach to Peer-to-Peer Electricity Markets with Product Differentiation

From

Department of Electrical Engineering, Technical University of Denmark1

Department of Management Engineering, Technical University of Denmark2

Systems Analysis, Department of Management Engineering, Technical University of Denmark3

Energy Analytics and Markets, Center for Electric Power and Energy, Centers, Technical University of Denmark4

Center for Electric Power and Energy, Centers, Technical University of Denmark5

CITIES - Centre for IT-Intelligent Energy Systems, Centers, Technical University of Denmark6

With the sustained deployment of distributed generation capacities and the more proactive role of consumers, power systems and their operation are drifting away from a conventional top-down hierarchical structure. Electricity market structures, however, have not yet embraced that evolution. Respecting the high-dimensional, distributed and dynamic nature of modern power systems would translate to designing peer-to-peer markets, or at least to using such a structure in the background for a bottom-up approach to future electricity markets.

A peer-to-peer market structure based on a Multi-Bilateral Economic Dispatch (MBED) formulation is introduced, allowing for multi-bilateral trading with product differentiation, for instance based on consumer preferences. Consequently a Relaxed Consensus+Innovation (RCI) approach is proposed to solve the MBED in fully decentralized manner.

A set of realistic case study analyses shows that such peer-to-peer market structures can effectively reduce externalities on power systems with a limited cost increase compared to centralized market approaches. Additionally, the RCI solving approach allows for a fully decentralized market clearing which converges with a negligible optimality gap, with a limited amount of information being shared.

Language: English
Publisher: IEEE
Year: 2018
Pages: 994-1004
ISSN: 08858950 and 15580679
Types: Journal article and Ahead of Print article
DOI: 10.1109/TPWRS.2018.2872880
ORCIDs: Pinson, Pierre

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