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A Two-Echelon Electric Vehicle Routing Problem with Time Windows and Battery Swapping Stations
Content Provider | MDPI |
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Author | Wang, Dan Zhou, Hong |
Copyright Year | 2021 |
Description | Driven by the new laws and regulations concerning the emission of greenhouse gases, it is becoming more and more popular for enterprises to adopt cleaner energy. This research proposes a novel two-echelon vehicle routing problem consisting of mixed vehicles considering battery swapping stations, which includes one depot, multiple satellites with unilateral time windows, and customers with given demands. The fossil fuel-based internal combustion vehicles are employed in the first echelon, while the electric vehicles are used in the second echelon. A mixed integer programming model for this proposed problem is established in which the total cost, including transportation cost, handling cost, fixed cost of two kinds of vehicles, and recharging cost, is minimized. Moreover, based on the variable neighborhood search, a metaheuristic procedure is developed to solve the problem. To validate its effectiveness, extensive numerical experiments are conducted over the randomly generated instances of different sizes. The computational results show that the proposed metaheuristic can produce a good logistics scheme with high efficiency. |
Starting Page | 10779 |
e-ISSN | 20763417 |
DOI | 10.3390/app112210779 |
Journal | Applied Sciences |
Issue Number | 22 |
Volume Number | 11 |
Language | English |
Publisher | MDPI |
Publisher Date | 2021-11-15 |
Access Restriction | Open |
Subject Keyword | Applied Sciences Industrial Engineering Two-echelon Vehicle Routing Problems Electric Vehicles Time Windows Variable Neighborhood Search |
Content Type | Text |
Resource Type | Article |