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Developing cross entropy genetic algorithm for solving Two-Dimensional Loading Heterogeneous Fleet Vehicle Routing Problem (2L-HFVRP)

机译:开发用于解决二维加载异构车队路径问题的跨熵遗传算法(2L-HFVRP)

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Two-dimensional Loading Heterogeneous Fleet Vehicle Routing Problem (2L-HFVRP) is a combination of Heterogeneous Fleet VRP and a packing problem well-known as Two-Dimensional Bin Packing Problem (BPP). 2L-HFVRP is a Heterogeneous Fleet VRP in which these costumer demands are formed by a set of two-dimensional rectangular weighted item. These demands must be served by a heterogeneous fleet of vehicles with a fix and variable cost from the depot. The objective function 2L-HFVRP is to minimize the total transportation cost. All formed routes must be consistent with the capacity and loading process of the vehicle. Sequential and unrestricted scenarios are considered in this paper. We propose a metaheuristic which is a combination of the Genetic Algorithm (GA) and the Cross Entropy (CE) named Cross Entropy Genetic Algorithm (CEGA) to solve the 2L-HFVRP. The mutation concept on GA is used to speed up the algorithm CE to find the optimal solution. The mutation mechanism was based on local improvement (2-opt, 1-1 Exchange, and 1-0 Exchange). The probability transition matrix mechanism on CE is used to avoid getting stuck in the local optimum. The effectiveness of CEGA was tested on benchmark instance based 2L-HFVRP. The result of experiments shows a competitive result compared with the other algorithm.
机译:二维加载异构车队车辆路由问题(2L-HFVRP)是异构车队VRP的组合和众所周知的包装问题作为二维垃圾箱包装问题(BPP)。 2L-HFVRP是一种异构的车队VRP,其中这些服装需求由一组二维矩形加权项目形成。这些要求必须由车辆的异质队列提供服务,并从仓库的修复和可变成本服务。目标函数2L-HFVRP是最小化总运输成本。所有形成的路线必须与车辆的容量和装载过程一致。本文考虑了顺序和不受限制的情况。我们提出了一种遗传算法(GA)和跨熵(CE)的组合,命名为跨熵遗传算法(CEGA)来解决2L-HFVRP。 GA上的突变概念用于加快算法CE以找到最佳解决方案。突变机制基于局部改进(2-OPT,1-1交换和1-0个交换)。 CE上的概率转换矩阵机制用于避免在局部最佳状态下卡住。基于基于基于基于基准的2L-HFVRP测试CEGA的有效性。与其他算法相比,实验结果表明了竞争结果。

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