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A multi-period optimization model for the deployment of public electric vehicle charging stations on network
Affiliation:1. Institute of System Science, School of Traffic and Transportation, Beijing Jiaotong University, Beijing, 100044, PR China;2. MOE Key Laboratory for Urban Transportation Complex Systems Theory and Technology, Beijing Jiaotong University, Beijing, 100044, PR China;3. Transportation Management College, Dalian Maritime University, Dalian, 116026, PR China
Abstract:A multi-period multipath refueling location model is developed to expand public electric vehicle (EV) charging network to dynamically satisfy origin–destination (O–D) trips with the growth of EV market. The model captures the dynamics in the topological structure of network and determines the cost-effective station rollout scheme on both spatial and temporal dimensions. The multi-period location problem is formulated as a mixed integer linear program and solved by a heuristic based on genetic algorithm. The model and heuristic are justified using the benchmark Sioux Falls road network and implemented in a case study of South Carolina. The results indicate that the charging station rollout scheme is subject to a number of major factors, including geographic distributions of cities, vehicle range, and deviation choice, and is sensitive to the types of charging station sites.
Keywords:Electric vehicle  Charging station  Multi-period location model  Mixed integer linear program  Genetic algorithm
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