TY - JOUR
T1 - Location model minimizing distances between EV charging stations
AU - Kakimoto, Yohei
AU - Goto, Hiroyuki
AU - Shimakawa, Yoichi
AU - Panote, Prommas
N1 - Publisher Copyright:
© IEOM Society International.
PY - 2019
Y1 - 2019
N2 - In cooperation with the recent prevalence of electric vehicles (EVs), researches focus on location planning for EV charging stations are being conducted actively. Fundamental in most relevant studies is that demand is associated with population. However, alongside a viewpoint that users of a facility are vehicles, traffic flow would be a primary instance which arises demand. Given a region, we consider a road network with links and nodes associated with roads and intersections. Given an origin-destination pair, each traffic shall flow on the shortest path. In this context, there is a concept called cannibalization, reflecting multiple facilities deprive the others of demand flowing on the same single path. A model explaining this phenomenon is called the flow-capturing location-allocation model (FCLM). Meanwhile, EVs have a significant constraint which should be taken into account in formulation; their driving distance is shorter than gasoline-powered vehicles. Thus, it is not adequate to apply the FCLM as it is to EVs. In light of this, we propose a new location-allocation model designed for EV charging stations. The model is an outgrowth of the standard FCLM, for which an out-of-battery situation does not occur. The distance between multiple facilities allocated on same path is minimized.
AB - In cooperation with the recent prevalence of electric vehicles (EVs), researches focus on location planning for EV charging stations are being conducted actively. Fundamental in most relevant studies is that demand is associated with population. However, alongside a viewpoint that users of a facility are vehicles, traffic flow would be a primary instance which arises demand. Given a region, we consider a road network with links and nodes associated with roads and intersections. Given an origin-destination pair, each traffic shall flow on the shortest path. In this context, there is a concept called cannibalization, reflecting multiple facilities deprive the others of demand flowing on the same single path. A model explaining this phenomenon is called the flow-capturing location-allocation model (FCLM). Meanwhile, EVs have a significant constraint which should be taken into account in formulation; their driving distance is shorter than gasoline-powered vehicles. Thus, it is not adequate to apply the FCLM as it is to EVs. In light of this, we propose a new location-allocation model designed for EV charging stations. The model is an outgrowth of the standard FCLM, for which an out-of-battery situation does not occur. The distance between multiple facilities allocated on same path is minimized.
KW - Combinatorial Optimization
KW - Flow-capturing
KW - Location
KW - Transportation
UR - http://www.scopus.com/inward/record.url?scp=85067246308&partnerID=8YFLogxK
M3 - Conference article
AN - SCOPUS:85067246308
SN - 2169-8767
VL - 2019
SP - 392
EP - 393
JO - Proceedings of the International Conference on Industrial Engineering and Operations Management
JF - Proceedings of the International Conference on Industrial Engineering and Operations Management
IS - MAR
T2 - 9th International Conference on Industrial Engineering and Operations Management, IEOM 2019
Y2 - 5 March 2019 through 7 March 2019
ER -