• Title/Summary/Keyword: BHS: Baggage Handling System

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A Process Perspective Event-log Analysis Method for Airport BHS (Baggage Handling System) (공항 수하물 처리 시스템 이벤트 로그의 프로세스 관점 분석 방안 연구)

  • Park, Shin-nyum;Song, Minseok
    • The Journal of Bigdata
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    • v.5 no.1
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    • pp.181-188
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    • 2020
  • As the size of the airport terminal grows in line with the rapid growth of aviation passengers, the advanced baggage handling system that combines various data technologies has become an essential element in order to handle the baggage carried by passengers swiftly and accurately. Therefore, this study introduces the method of analyzing the baggage handling capacity of domestic airports through the latest data analysis methodology from the process point of view to advance the operation of the airport BHS and the main points based on event log data. By presenting an accurate load prediction method, it can lead to advanced BHS operation strategies in the future, such as the preemptive arrangement of resources and optimization of flight-carrousel scheduling. The data used in the analysis utilized the APIs that can be obtained by searching for "Korea Airports Corporation" in the public data portal. As a result of applying the method to the domestic airport BHS simulation model, it was possible to confirm a high level of predictive performance.

Merge Control using Reserve Ahead Point in Baggage Handling System (수하물시스템의 사전할당지점을 이용한 병합제어)

  • Kim, Minhee;Shin, Hyunwoo;Chae, Junjae
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.40 no.2
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    • pp.60-67
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    • 2017
  • A baggage handling system (BHS) in airport is an unified system for moving the passengers' baggage in designated time. Input baggage from the check-in counter travels to the baggage claim area or cargo handling terminal through this system. In particular, entryway BHS consists of conveyors, X-ray and sorters such as tilt-tray to send the baggage to departing airplane and it could have various problems for handling certain amount of baggage in restricted time such as baggage jamming at certain merge point. This causes systemic error such as delay of the time, omissions of the baggage and even breakdown of the equipment and inefficiency. Also the increasing maximum time of the baggage passing through the BHS could delay the flight schedule and finally decrease the service level. Thus, the algorithm for controlling the flow of the merge is essential to the system. The window reservation algorithm is the one of the most frequently used methods to control the merge configuration. Above all, the reserve location, so called reserve ahead point, that allocates the window is important for the performance of the algorithm. We propose the modified window reservation algorithm and the best reserve locations by changing the reserve ahead point in the induction conveyors. The effect of various reserve ahead points such as the capacity and utility of the system were analyzed and the most effective reserve ahead point combination was found. The total baggage processing time and the utilization of the tilt-tray are properly considered when choosing the optimal Reserve ahead point combination. In the layout of this study, the configuration of four conveyors merged into one tilt-tray is studied and simulation analysis is done by AutoMod(R), 3D simulation software. Through the simulation, the window reservation algorithm is effectively operated with the best combination of reserve ahead point which reduces the maximum baggage travel time.

A Study on the Quality Assessment of Baggage Handling System at Incheon International Airport - Using SERVQUAL Model - (인천국제공항 수하물처리시스템 서비스 품질 평가에 관한 연구 - SERVQUAL 모델을 적용하여 -)

  • Kim, Jong-Seo;Kim, Ha-Young;Park, Sung-Sik;Kim, Kee-Woong
    • Journal of the Korean Society for Aviation and Aeronautics
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    • v.26 no.4
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    • pp.1-12
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    • 2018
  • Baggage Handling System(BHS) is an important element of ground operation services and the importance is further emphasized as air demand increases and passengers change. If there is a problem with departure baggage handling, the aircraft's gate occupancy time will be longer than the initial plan, resulting in congestion of the anchorage leading to final passenger terminal and mooring and road congestion and arrival or It is delayed until the processing of the baggage of the connecting flight and it can cause an economic loss such as confusion in the operation of the airport. The purpose of this study is to investigate the effect of the perception of service quality of BHS users on public Institutions performance through user satisfaction, user performance, and user loyalty. Analysis results using Structural Equation Model was suggested and its implication was discussed in the conclusion.

An Analysis of Baggage Demand for Designing Baggage Handling System(BHS) (A Case Study of Incheon International Airport) (수하물처리시설 설계를 위한 수하물 수요분석(인천국제공항의 예))

  • Bae, Byung-Uk;Lee, Hong-Cheol
    • Journal of Korean Society of Transportation
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    • v.22 no.1 s.72
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    • pp.19-30
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    • 2004
  • Once baggage demand of passengers is forecast, BHS requirements must be analyzed, i.e., the number of originating/transferring/terminating bags to be handled, the number of conveyor lines to be installed, the number of containers for baggage make-up, the number of claim devices for baggage claim, and so on. Therefore, the determination of the baggage traffic volume is one of the most important analysis components for the airport design. Accordingly, this research proposes time-based distribution table models in order to accurately estimate BHS requirements to obtain design criteria in airport design phase. As the BHS requirements are ascertained, related requirements of the facilities can be determined by applying actual specifications of devices, i.e., throughput. This research found that the proposed mathematical model gives a good reflection of IIA (Incheon International Airport)'s operational condition. That means the model provides apparent reliability and feasibility. Furthermore, the specifications of devices are the newest figures. This fact supports that the research provides more effcient and reliable results.

Baggage Handling System at the Airport (공항의 수하물 처리 시스템)

  • Kim, Tae-Sun;Gwon, Gyu-Yeong;Hong, Hyeon-Eui;Lee, Hyeok-Ju;Shin, Jeong-Heum
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2022.01a
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    • pp.305-306
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    • 2022
  • 본 논문에서는 공항에서 보다 빠르고 편리한 체크인과 보딩을 위해 여러 가지 사업을 진행하고 있다. 우리는 그 중에서 수하물이 맡겨지고 이동하는 시스템에 주목했다. 수하물을 자동으로 분류하여 해당 항공기까지 전달하는 BHS시스템 등 다양한 시스템이 있었다. 현행 시스템에서 수하물 등록은 셀프로 간편하고 빠르게 등록할 수 있지만, 다시 찾아오는 과정이 너무 불편한 점과 수하물 분류는 알아서 하지만, 그 수하물을 컨테이너에 싣고 다시 운반하는 과정은 사람이 하는 등의 문제점에 주목을 했다. 우리의 전공 지식을 활용하여 이 문제점들을 해결해보고자 이러한 주제를 선정하게 되었다.

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A Fair Flow Control For Baggage Handling System in Airport (공항 수하물 처리시스템의 균형적인 흐름제어 기법 연구)

  • Kim, Junbeom;Kim, Gukhwa;Chae, Junjae
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.41 no.10
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    • pp.1317-1327
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    • 2016
  • The baggage handling system (BHS) is one of the most complex system in the airport. A highly economical operating system is required to ensure its performance in consideration of its enormous cost on the extension. Furthermore, the inefficient operation deteriorates not only the system performance but the imbalance among the check-in counters because of a bottleneck on the conveyors downstream. The objective of this research is to improve the performance of both the BHS and the check-in area by efficiently controlling the flow in the merging area on the conveyors. Thus, we suggest a control logic of which the concept is borrowed from data networks. The simulation is used to analyze impacts of the conveyors bottleneck on the check-in area and optimize some parameters used in the suggested logic. We also discuss some observations from the simulation results into several aspects of performance measures.

A Study on the Adoption of Self Bag-Drop System to Enhance Airport Operation (공항운영 향상을 위한 Self Bag-Drop System(무인수하물처리시스템) 적용가능성 연구)

  • Lee, Kang-Seok;Ji, Min-Seok
    • Journal of the Korean Society for Aviation and Aeronautics
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    • v.23 no.2
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    • pp.75-83
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    • 2015
  • Advanced countries in the aviation industry, especially the United States and European Union, develop and commercialize their own SBD system integrated with IT convergence technology, dominating the international market. Nevertheless, most of SBD technologies in domestic airports rely on other countries. It is imperative that internal airport operators introduce the Self Bag Drop system and produce, apply, and manage the most optimized SBD system for airports and airlines. Upon analyzing the tendency and operation of the SBD system utilized in leading international airports, this is conducted to address the possibility of the future implementation in domestic airports.