首页> 外文OA文献 >Scheduling of driver activities with multiple soft time windows considering European regulations on rest periods and breaks
【2h】

Scheduling of driver activities with multiple soft time windows considering European regulations on rest periods and breaks

机译:考虑欧洲休息时间和休息时间的规定,安排多个软时间窗的驾驶员活动

摘要

When considering long-haul transport requests, the durations of rest periods and breaks highly influence the overall time needed for fulfillment. In the European Union, Regulation (EC) No 561/2006 defines the rules for the number, duration and time intervals when rest periods and breaks have to be taken. The present study proposes two mixed integer linear programming models and optimization strategies that, together with a transformation algorithm, allow to plan driver activities in compliance with this regulation for a given sequence of customer locations and other stops to be visited. One of the models considers all rules, including extended rules, while the other takes into account the regular requirements. Each customer location has one or multiple time windows among which a choice has to be made. A special feature is the consideration of "soft" time windows which has not been studied in this context so far. If time windows cannot be met, the resulting schedule gives important information to the dispatcher that is necessary to set up a better schedule. In online re-planning, lateness can be revealed at an early stage such that it is possible to reorganize the schedule or to negotiate arrival times with customers before communication effort and costs increase and further delays or cancellations are unavoidable. In addition to the mathematical models, a myopic algorithm was developed that can only "see" the route until the next customer stop and the corresponding customer time window in advance and plans driver activities accordingly. Simple strategies were chosen to also integrate the optional rules. Test instances were derived from real data and include vehicle routes for one week. The numerical results obtained with the mathematical models and the myopic algorithm are analyzed and compared in terms of the run time, lateness and overall travel time.
机译:在考虑长途运输要求时,休息时间和休息时间的长短会极大地影响履行所需的总时间。在欧洲联盟(EC)第561/2006号法规中,规定了必须采取休息和休息时间的次数,持续时间和时间间隔的规则。本研究提出了两种混合整数线性规划模型和优化策略,以及一种转换算法,可以针对给定的客户位置序列和其他要访问的站点,按照此法规来计划驾驶员活动。其中一个模型考虑了所有规则,包括扩展规则,而另一个模型考虑了常规需求。每个客户位置都有一个或多个时间窗口,必须在其中进行选择。一个特殊的功能是考虑“软”时间窗口,到目前为止,尚未对此进行研究。如果无法满足时间范围,则生成的时间表将为调度员提供重要信息,这是设置更好的时间表所必需的。在在线重新计划中,可以在较早的阶段就显示出延迟情况,以便可以在通信工作和成本增加之前避免与客户重新安排时间表或协商到达时间,并且不可避免地会进一步延迟或取消。除了数学模型外,还开发了一种近视算法,该算法只能“看到”路线,直到下一个客户停车站和相应的客户时间窗口为止,并据此计划驾驶员活动。选择了简单策略来集成可选规则。测试实例来自真实数据,包括一周的车辆行驶路线。分析并比较了通过数学模型和近视算法获得的数值结果的运行时间,延迟和总行驶时间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号