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Incorporating demand dynamics in multi-period capacitated fast-charging location planning for electric vehicles

  • SUNY Buffalo
  • University of South Florida

Research output: Contribution to journalArticlepeer-review

114 Scopus citations

Abstract

We develop a multi-period capacitated flow refueling location problem for electric vehicles (EVs) as the EV market responds to the charging infrastructure. The optimization model will help us determine the optimal location of level 3 chargers as well as the number of charging modules at each station over multiple time periods. Our model can also be applied to fast-filling gaseous alternative fuel vehicles under similar assumptions. We define a number of demand dynamics, including flow demand growth as a function of charging opportunities on path as well as natural demand growth independent of charging infrastructure. We also present an alternative objective function of maximizing electric vehicle demand in addition to maximizing flow coverage. A case study based on a road network around Washington, D.C., New York City, and Boston is presented to provide numerical experiments related to demand dynamics, showing the potential problems in multi-period planning.

Original languageEnglish
Pages (from-to)5-29
Number of pages25
JournalTransportation Research Part B: Methodological
Volume103
DOIs
StatePublished - Sep 2017

Keywords

  • Alternative fuel vehicles
  • Electric vehicles
  • Facility location
  • Flow refueling location problem
  • Multi-period planning
  • Vehicle market demand dynamics

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