基于金字塔模型的变种群进化算法求解共享公交调度问题

H. Tiantian, Su Sheng
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引用次数: 0

摘要

随着共享经济时代的到来,共享出行模式逐渐进入大众视野,受到大众的关注和青睐。不同地点之间的距离和路线规划的难度在一定程度上增加了人们共享出行的难度,也使共享公交调度问题成为一个非常热门的话题。针对这一问题,提出了一种基于金字塔模型(PME)的变种群进化算法。首先,针对传统进化算法收敛速度慢的问题,引入变种群进化的概念和加权基因的随机选择来生成染色体;其次,改进了遗传算法的交叉操作,使所有染色体都具有优秀的基因。此外,本文提出的PME算法可以准确预测第二天调度所需车辆的具体数量,也可以实现指定范围内路线未知时所有车辆的共享。实验数据表明,该方法取得了较好的性能。
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A Variable Population Evolutionary Algorithm Based on Pyramid Model for Shared Bus Scheduling Problem
With the advent of the era of sharing economy, shared travel mode has gradually entered the public's vision and attracted the public's attention and favor. The long-distance between different locations and the difficulty of route planning not only increase the difficulty of people sharing travel to a certain extent but also make the shared bus scheduling problem become a very hot topic. Aiming at this problem, this paper proposes a variable population evolution algorithm based on the pyramid model (PME). Firstly, due to the slow convergence speed of traditional evolutionary algorithms, the concept of variable population evolution and the random selection of weighted genes are introduced to generate a chromosome. Secondly, the crossover operation in the genetic algorithm is improved by crossing all chromosomes with excellent genes. In addition, the PME algorithm proposed in this paper can accurately predict the specific number of vehicles required for dispatch on the next day, and it can also realize the sharing of all vehicles when the route in the specified range is unknown. Experimental data show that the proposed method achieves better performance.
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