[1] 国家邮政局. 国家邮政局公布2021年邮政行业运行情况[EB/OL]. [2022-02-13]. http://www.spb.gov.cn/gjyzj/c100276/202201/74c80cf2fd7b44c3aa5d6facb464bcb8.shtml. [2] 武楷. 快递从业人员权益保障探究[J]. 合作经济与科技, 2021, 648(1): 186-187 WU Kai. Research on the protection of rights and interests of express practitioners[J]. Co-Operative Economy & Science, 2021, 648(1): 186-187 [3] 薛明. 恶劣天气因素下最优车辆路线调度路径选择[J]. 计算机仿真, 2015, 32(3): 210-212 XUE Ming. Optimal path selection of vehicle route scheduling under bad weather factors[J]. Computer Simulation, 2015, 32(3): 210-212 [4] 李妍峰, 高自友, 李军. 基于实时交通信息的城市动态网络车辆路径优化问题[J]. 系统工程理论与实践, 2013, 33(7): 1813-1819 LI Yanfeng, GAO Ziyou, LI Jun. Vehicle routing problem in dynamic urban network with real-time traffic information[J]. Systems Engineering—Theory & Practice, 2013, 33(7): 1813-1819 [5] ZHONG H, HALL R W, DESSOUKY M. Territory planning and vehicle dispatching with driver learning[J]. Transportation Science, 2007, 41(1): 74-89 [6] KUNKEL M, SCHWIND M. Vehicle routing with driver learning for real world CEP problems[C/OL]. (2013-02-09). https://ieeexplore.ieee.org/document/6148681. [7] ULMER M, NOWAK M, MATTFELD D, et al. Binary driver-customer familiarity in service routing[J]. European Journal of Operational Research, 2020, 286(2): 477-493 [8] SCHNEIDER M, DOPPSTADT C, STENGER A, et al. Ant colony optimization for a stochastic vehicle routing problem with driver learning[C/OL]. (2010-11-27). https://ieeexplore.ieee.org/document/5585999. [9] SCHNEIDER M. The vehicle-routing problem with time windows and driver-specific times[J]. European Journal of Operational Research, 2016, 250(1): 101-119 [10] GLOCK C H, GROSSE E H, KIM T, et al. An integrated cost and worker fatigue evaluation model of a packaging process[J]. International Journal of Production Economics, 2019, 207: 107-124 [11] GRANOTTO G F, SGARBOSSA F, GLOCK C H, et al. The effect of worker fatigue on the performance of a bucket brigade order picking system[J]. IFAC-PapersOnLine, 2019, 52(13): 2195-2200 [12] GOEL A. Vehicle scheduling and routing with drivers' working hours[J]. Transportation Science, 2009, 43(1): 17-26 [13] 朱子轩, 靳文舟, 巫威眺, 等. 考虑驾驶员需求的定位运输线路安排问题[J]. 广西大学学报 (自然科学版), 2020, 45(1): 229-238 ZHU Zixuan, JIN Wenzhou, WU Weitiao, et al. A location routing problem with driver needs[J]. Journal of Guangxi University (Natural Science Edition), 2020, 45(1): 229-238 [14] LI J, DU J, LI L. Optimization of vehicle routing problem with fatigue driving based on genetic algorithm [C/OL]. (2018-10-09). https://doi.org/10.1145/3264746.3264782. [15] ZHANG S Z, LEE C K M, CHOY K L, et al. Design and development of a hybrid artificial bee colony algorithm for the environmental vehicle routing problem[J]. Transportation Research Part D:Transport and Environment, 2014, 31: 85-99 [16] NG K K H, LEE C K M, ZHANG S Z, et al. A multiple colonies artificial bee colony algorithm for a capacitated vehicle routing problem and re-routing strategies under time-dependent traffic congestion[J]. Computers & Industrial Engineering, 2017, 109: 151-168 [17] 张家善, 林晓群. 一种带自适应策略的改进蜂群算法及其在VRP的应用[J]. 数学的实践与认识, 2018, 48(23): 89-95 ZHANG Jiashan, LIN Xiaoqun. An improved artificial bee colony with self-adaptive strategies and application in the VRP[J]. Mathematics in Practice and Theory, 2018, 48(23): 89-95 [18] 陈皓, 张洁, 杨清萍, 等. 基于混合搜索的多种群人工蜂群算法[J]. 计算机应用, 2017, 37(10): 2773-2779, 2786 CHEN Hao, ZHANG Jie, YANG Qingping, et al. Multi-population artificial bee colony algorithm based on hybrid search[J]. Journal of Computer Applications, 2017, 37(10): 2773-2779, 2786 [19] GASTALDI M, ROSSI R, GECCHELE G. Effects of driver task-related fatigue on driving performance[J]. Procedia-Social and Behavioral Sciences, 2014, 111: 955-964 [20] JABER M Y, GIVI Z S, NEUMANN W P. Incorporating human fatigue and recovery into the learning-forgetting process[J]. Applied Mathematical Modelling, 2013, 37(12-13): 7287-7299 |