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Balancing the baggage handling performance of a check-in area shared by multiple airlines

机译:平衡多家航空公司共用的登机区的行李处理性能

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摘要

Baggage handling systems (BHS) take up a significant portion of an airport's overall operation. In particular, an entryway BHS is an essential component as it facilitates a smooth transition for baggage flowing from the check-in area to the general BHS by reconstituting a dynamic baggage flow into a stable flow on a conveyor system. The main purpose of this research is to determine an appropriate workload balance for a BHS line being shared by multiple airlines. This is particularly relevant in the South Korean context, as imbalances have been observed in the BHS design for an extension at Gimhae International Airport. These imbalances lead to a lower customer satisfaction rates for that particular airline as well as a reduction in the level of service provided by the airport during peak hours. In this study, new window reservation control logic, a re-allocation algorithm using a merge configuration, is applied to the entryway BHS. This allows the system to efficiently control the baggage flow space from respective check-in counters so as to relieve conveyor bottleneck, an intrinsic problem leading to the imbalances. A simulation model is used to test the validity of the suggested algorithm, and to investigate the effects on the performance measures related to both the BHS and check-in area. The results indicate that this suggested algorithm reduces the imbalances for the airlines sharing the BHS collection conveyor, while maintaining overall BHS performance at an acceptable level. The relationships between the variable used in the algorithm and overall performance are discussed further. (C) 2016 Elsevier Ltd. All rights reserved.
机译:行李处理系统(BHS)占据了机场总体运营的很大一部分。特别是,入口BHS是必不可少的组件,因为它通过将动态行李流重构为输送机系统上的稳定流,从而促进了行李从托运区到普通BHS的平稳过渡。这项研究的主要目的是确定由多家航空公司共享的BHS航线的适当工作量平衡。这在韩国情况下尤其重要,因为在BHS设计中发现了金海国际机场的扩建部分不平衡。这些失衡导致该特定航空公司的客户满意度降低,并且导致机场在高峰时段提供的服务水平下降。在这项研究中,将新的窗口保留控制逻辑(一种使用合并配置的重新分配算法)应用于入口BHS。这使得系统可以从各个值机柜台有效地控制行李流动空间,从而减轻传送带的瓶颈,这是导致不平衡的固有问题。仿真模型用于测试所建议算法的有效性,并研究对BHS和签到区域相关性能指标的影响。结果表明,该建议的算法减少了共享BHS收集传送带的航空公司的不平衡,同时将总体BHS性能保持在可接受的水平。进一步讨论了算法中使用的变量与整体性能之间的关系。 (C)2016 Elsevier Ltd.保留所有权利。

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