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Phase separation induces congestion waves in electric vehicle charging

Philip Marszal1, Marc Timme1,2,3, and Malte Schröder1

  • 1Chair for Network Dynamics, Center for Advancing Electronics Dresden (cfaed) and Institute for Theoretical Physics, Technical University of Dresden, 01062 Dresden, Germany
  • 2Cluster of Excellence Physics of Life, Technical University of Dresden, 01062 Dresden, Germany
  • 3Lakeside Labs, Lakeside B04b, 9020 Klagenfurt, Austria

Phys. Rev. E 104, L042302 – Published 26 October, 2021

DOI: https://doi.org/10.1103/PhysRevE.104.L042302

Abstract

Electric vehicles may dominate motorized transport in the next decade, yet the impact of the collective dynamics of electric mobility on long-range traffic flow is still largely unknown. We demonstrate a type of congestion that arises if charging infrastructure is limited or electric vehicle density is high. This congestion emerges solely through indirect interactions at charging infrastructure by queue-avoidance behavior that—counterintuitively—induces clustering of occupied charging stations and phase separation of the flow into free and congested stations. The resulting congestion waves always propagate forward in the direction of travel, in contrast to typically backward-propagating congestion waves known from traditional traffic jams. These results may guide the planning and design of charging infrastructure and decision support applications in the near future.

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