2020
DOI: 10.1155/2020/8843397
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Collaborative Multidepot Petrol Station Replenishment Problem with Multicompartments and Time Window Assignment

Abstract: Energy supply is an important system that affects the overall efficiency of urban transportation. To improve the system operational efficiency and reduce costs, we formulate and solve a collaborative multidepot petrol station replenishment problem with multicompartments and time window assignment by establishing a mixed-integer linear programming model. The hybrid heuristic algorithm composed of genetic algorithm and particle swarm optimization is used as a solution, and then the Shapley value method is applie… Show more

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Cited by 4 publications
(3 citation statements)
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“…e results show that the efficiency of the proposed method has good performance in addressing TWAVRP. A mathematics model is proposed to enhance the operational efficiency and reduce the total cost, and a hybrid heuristic algorithm is used for TWAVRP [58].…”
Section: Literature Reviewmentioning
confidence: 99%
“…e results show that the efficiency of the proposed method has good performance in addressing TWAVRP. A mathematics model is proposed to enhance the operational efficiency and reduce the total cost, and a hybrid heuristic algorithm is used for TWAVRP [58].…”
Section: Literature Reviewmentioning
confidence: 99%
“…To reduce transportation costs and environmental impacts, a collaborative scheme is integrated into MDVRPTW optimizations [20]. For the collaboration in the multicenter vehicle routing problems (MCVRP), Xu et al [21] established a mixed-integer linear programming model to study a collaborative multidepot petrol station replenishment problem with multicompartments and the assignment of the customers' time windows. Considering the horizontal collaboration between distribution centers, Muñoz-Villamizar et al [22] optimized the urban logistics network to minimize the overall cost and reduce environmental impacts.…”
Section: Mdvrptwmentioning
confidence: 99%
“…Constraint (19) defines that the semitrailer truck arrives at the PC. Constraints (20) and (21) denote that the time of each semitrailer truck departure from and return to the logistics facilities meet the time window of the LC. Constraint (22) limits that the total time a semitrailer truck travels on each route must be less than or equal to the allowed time of each route:…”
Section: 31mentioning
confidence: 99%