首页> 外文OA文献 >A multi-agent system for a bus crew rescheduling system
【2h】

A multi-agent system for a bus crew rescheduling system

机译:一种用于公交车员重新安排系统的多智能体系统

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Unpredictable events (UE) are major factors that cause disruption to everyday bus operation. In the occurrence of UE, the main resources - crews and vehicles - are affected, and this leads to crew schedule disruption. One way to deal with the problem is crew rescheduling. Most of the current approaches are based on static schedules do not support rescheduling in a real-time scenario. They have the ability to reschedule but a new complete schedule is produced without concerning the real time situation. The mathematical approaches which are used by most scheduling packages have the ability to search for optimum or near optimum schedules but they are usually slow to produce results in real-time because they are computationally intensive when faced with complex situations. In practice, crew or bus rescheduling is managed manually, based on the supervisor's capabilities and experience in managing UE. However, manual rescheduling is complex, prone to error and not optimum, especially when dealing with many UE at the same time. This research proposes the CRSMAS (Crew Rescheduling System with Multi Agent System) approach as an alternative that may help supervisors to make quick rescheduling decisions by automating the crew rescheduling process. A Multi Agent System (MAS) is considered suitable to support this rescheduling because agents can dynamically adapt their behaviour to changing environments and they can find solutions quickly via negotiations and cooperation between them. To evaluate the CRSMAS, two types of experiment are carried out: Single Event and Multiple Events. The Single Event experiment is used to find characteristics of crew schedules that influence the crew rescheduling process while the Multiple Events experiment is used to test the capability of CRSMAS in dealing with numerous events that occur randomly. A wide range of simulation results, based on real-world data, are reported and analysed. Based on the experiment it is concluded that CRSMAS is suitable for automating the crew rescheduling process and capable of quick rescheduling whether facing single events or multiple events at the same time, the success of rescheduling is not only dependant on the tool but also to other factors such as the characteristics of crew schedules and the period of the UE, and one limitation of CRSMAS that was discovered is it cannot simulate different type of events at the same time. This limitation is because in different events there are different rules but, in Virtual World, agents can only negotiate with one set of rules at a time.
机译:不可预测的事件(UE)是导致日常公交运营中断的主要因素。在UE发生时,主要资源-机组人员和车辆-受到影响,这导致机组人员调度中断。解决问题的一种方法是重新安排船员的时间。当前大多数方法都是基于静态计划的,不支持在实时场景中进行重新计划。他们具有重新计划的能力,但是无需考虑实时情况就可以生成新的完整计划。大多数计划程序包使用的数学方法具有搜索最佳或接近最佳计划的能力,但是由于面对复杂的情况它们计算量大,因此通常实时生成结果的速度很慢。在实践中,根据主管的能力和管理UE的经验,手动管理人员或公共汽车的重新安排。然而,手动重新调度是复杂的,容易出错并且不是最佳的,尤其是当同时处理多个UE时。这项研究提出了CRSMAS(带有多Agent系统的机组重新调度系统)方法,它可以帮助管理人员通过使机组重新调度过程自动化来快速做出重新调度决策。多代理系统(MAS)被认为适合支持此重新计划,因为代理可以动态地使其行为适应不断变化的环境,并且可以通过它们之间的协商和合作快速找到解决方案。为了评估CRSMAS,进行了两种类型的实验:单事件和多事件。单事件实验用于查找影响船员重新安排过程的船员时间表的特征,而多事件实验用于测试CRSMAS处理随机发生的大量事件的能力。报告和分析了基于实际数据的各种模拟结果。根据实验得出的结论是,CRSMAS适用于自动化人员重新安排流程,并且能够快速重新安排是否同时面对单个事件或多个事件,重新安排的成功不仅取决于工具,还取决于其他因素例如船员时间表的特性和UE的期限,以及发现的CRSMAS的局限性是它不能同时模拟不同类型的事件。此限制是因为在不同的事件中存在不同的规则,但是在虚拟世界中,代理一次只能协商一组规则。

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