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A hybrid evolutionary algorithm for heterogeneous fleet vehicle routing problems with time windows

机译:带时间窗的异构机群车辆路径问题的混合进化算法

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摘要

This paper presents a hybrid evolutionary algorithm (HEA) to solve heterogeneous fleet vehicle routing problems with time windows. There are two main types of such problems, namely the fleet size and mix vehicle routing problem with time windows (F) and the heterogeneous fixed fleet vehicle routing problem with time windows (H), where the latter, in contrast to the former, assumes a limited availability of vehicles. The main objective is to minimize the fixed vehicle cost and the distribution cost, where the latter can be defined with respect to en-route time (T) or distance (D). The proposed unified algorithm is able to solve the four variants of heterogeneous fleet routing problem, called FT, FD, HT and HD, where the last variant is new. The HEA successfully combines several metaheuristics and offers a number of new advanced efficient procedures tailored to handle the heterogeneous fleet dimension. Extensive computational experiments on benchmark instances have shown that the HEA is highly effective on FT, FD and HT. In particular, out of the 360 instances we obtained 75 new best solutions and matched 102 within reasonable computational times. New benchmark results on HD are also presented.
机译:本文提出了一种混合进化算法(HEA)来解决带有时间窗的异构机群车辆路径问题。这种问题主要有两种类型,即带有时间窗(F)的车队规模和混合车辆路径问题和带有时间窗(H)的异构固定车队车辆路径问题,与前者相比,后者假设车辆数量有限。主要目的是使固定车辆成本和分配成本最小化,后者可以根据行进时间(T)或距离(D)进行定义。所提出的统一算法能够解决异构车队路由问题的四个变体,称为FT,FD,HT和HD,其中最后一个变体是新的。 HEA成功地结合了多种元启发式方法,并提供了许多量身定制的新高级高效程序,以处理异构机群规模。在基准实例上进行的大量计算实验表明,HEA在FT,FD和HT方面非常有效。特别是,在360个实例中,我们获得了75个新的最佳解决方案,并在合理的计算时间内匹配了102个。还介绍了高清的新基准测试结果。

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