...
首页> 外文期刊>Transportation Research Part B: Methodological >Optimising airport slot allocation considering flight-scheduling flexibility and total airport capacity constraints
【24h】

Optimising airport slot allocation considering flight-scheduling flexibility and total airport capacity constraints

机译:考虑航班调度灵活性和总机场容量约束,优化机场插槽分配

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The lack of airport capacity hinders the growth potential of global air travel, inflicting delays and economic losses to passengers, airlines, and airports. Airport Slot Allocation (ASA) is used in congested airports as a short-term measure for providing access to air carriers to scarce airport resources. A rich literature has been developed during the last decade around the formulation and optimisation of the ASA problem using the IATA World Scheduling Guidelines (IATA WSG). However, existing models do not address airlines & rsquo; flight scheduling flexibility preferences which are expressed through the Timing Flexibility Indicator (TFI). Additionally, in considering the airport & rsquo;s capacity, existing ASA literature does not treat endogenously the allocation of the available airport capacity to match the demand & rsquo;s characteristics. This paper addresses these issues by proposing a novel modelling and solution framework that considers airlines & rsquo; flexibility preferences and its seamless integration with constraints that enable the dynamic allocation of the airport & rsquo;s resources. Our approach takes into account the number of rejected requests, the total, and maximum displacement objectives and addresses several primary and additional policy criteria of IATA WSG. The preferences of the airlines are introduced through the Timing Flexibility Indicator (TFI) which is incorporated in a weighted objective function considering the number of slot requests which fall within their specified TFI. The proposed framework benefits from valid tightening inequalities which reduce the required computational times. Our computational study using data from a coordinated airport suggests that the joint consideration of the TFI and the endogenous and dynamic capacity constraints, improves airport capacity utilisation, thus leading to improved airport slot schedules with reduced total and maximum displacement and significant improvements in terms of displaced slot requests and passengers.(c) 2021 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license ( http://creativecommons.org/licenses/by/4.0/ )
机译:机场产能缺乏阻碍全球航空旅行的增长潜力,对乘客,航空公司和机场造成延误和经济损失。机场插槽分配(ASA)用于拥挤的机场,作为提供对航空运营商提供稀缺机场资源的短期措施。使用IATA世界调度指南(IATA WSG)的ASA问题的制定和优化的过去十年来开发了丰富的文学。但是,现有型号不符合航空公司和rsquo;航班调度灵活性偏好,其通过定时灵活性指示器(TFI)表示。此外,在考虑机场和rsquo的能力时,现有的ASA文学并没有内源性地分配可用的机场能力,以满足需求和rsquo的特点。本文通过提出考虑航空公司和RSQUO的新型建模和解决方案框架来解决这些问题;灵活性偏好及其与制约因素的无缝集成,使机场和rsquo的动态分配。我们的方法考虑了拒绝请求,总和最大位移目标的数量,并解决了IATA WSG的几个主要和附加策略标准。通过定时灵活性指示符(TFI)引入航空公司的偏好,其在考虑到其指定的TFI内的槽请求的数量的数量,其结合在加权目标函数中。所提出的框架益处有效的紧缩不平等,减少了所需的计算时间。我们使用来自协调机场的数据的计算研究表明,联合考虑了TFI和内源性和动态能力的限制,提高了机场产能利用率,从而提高了机场插槽时间表,减少了总量和最大位移,并取得了最大位移和显着改善的流离失所插槽请求和乘客。(c)2021作者。由elsevier有限公司出版。这是CC的开放式访问文章,由许可证(http://creativecommons.org/licenses/by/4.0/)

著录项

获取原文

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