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A hybrid VNS/Tabu search algorithm for solving the vehicle routing problem with drones and en route operations

机译:一种混合VNS / Tabu搜索算法,用于解决无人机和挖掘操作的车辆路由问题

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With the goal of integrating drones in last-mile delivery, the Vehicle Routing Problem with Drones (VRPD) uses a fleet of vehicles, each of them equipped with a set of drones, for serving a set of customers with minimal makespan. In this paper, we propose an extension of the VRPD that we call the Vehicle Routing Problem with Drones and En Route Operations (VRPDERO). Here, in contrast to the VRPD, drones may not only be launched and retrieved at vertices but also on some discrete points that are located on each arc. We formulate the problem as a Mixed Integer Linear Program (MILP) and introduce some valid inequalities that enhance the performance of the MILP solvers. Furthermore, due to limited performance of the solvers in addressing large-scale instances, we propose an algorithm based on the concepts of Variable Neighborhood Search (VNS) and Tabu Search (TS). In order to evaluate the performance of the introduced algorithm as well as the solver in solving the VRPDERO instances, we carried out extensive computational experiments. According to the numerical results, the proposed valid inequalities and the heuristic have a significant contribution in solving the VRPDERO effectively. In addition, the consideration of en route operations can increase the utilization of drones and lead to an improved makespan. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过将无人机集成到最后一英里的交付中,无障碍(VRPD)的车辆路由问题使用车辆,每个车辆都配备了一套无人机,用于为一套具有最小的Makespan提供一套客户。在本文中,我们提出了延伸VRPD,我们将车辆路由问题与无人机和通路操作(VRPDERO)称为。这里,与VRPD相比,无人机可能不仅可以在顶点上启动和检索,而且还可以在每个弧上的某些离散点上启动和检索。我们将问题作为混合整数线性程序(MILP)制定,并引入一些有效的不等式,增强了MILP求解器的性能。此外,由于求解器在寻址大规模实例的情况下,我们提出了一种基于可变邻域搜索(VNS)和禁忌搜索(TS)的概念的算法。为了评估引入的算法的性能以及解决VRPDERO实例的求解器,我们进行了广泛的计算实验。根据数值结果,拟议的有效不平等和启发式有效贡献有效解决VRPDERO。此外,考虑到途径操作可以增加无人机的利用,并导致改进的Makespan。 (c)2019 Elsevier Ltd.保留所有权利。

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