• Title/Summary/Keyword: UAM corridor

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UAM Parallel Corridor Collision Risk Analysis based on Collision Risk Model (충돌 위험 모델을 활용한 UAM 평행 항로 충돌 위험 분석)

  • Youn-sil Kim;Joong-won Bae
    • Journal of Advanced Navigation Technology
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    • v.27 no.5
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    • pp.561-567
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    • 2023
  • In this study, the collision risk of the UAM (Urban Air Mobility) corridor was analyzed using a collision risk model applied to the manned aircraft corridor. According to the K-UAM roadmap and operating concept, UAM is expected to fly on a designated route similar to existing manned aircraft operations and operate on two routes, traveling back and forth between the departure point and the destination point. Among domestic manned aircraft routes, the manned aircraft operation between Gimpo Airport and Jeju Airport is similar to this and takes the form of a parallel route with a lateral separation distance between the two routes. In this study, we analyzed the collision risk of the UAM corridor according to the lateral separation distance using a collision risk model used to analyze the collision risk of manned aircraft parallel routes for a similar type of UAM corridor. Based on this, we finally analyzed how many parallel routes could be installed within the width of the Han River, considering the K-UAM demonstration route.

Weather Barriers of Urban Air Mobility (UAM) Operations: A Case Study of the Visibility and Wind Shear around Han-River Corridor (도심항공교통(UAM) 운용 실증 노선의 기상 특성 및 시사점: 한강회랑의 시정 및 바람을 중심으로)

  • Wan-Sik Won;Yeon Myung Kim
    • Atmosphere
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    • v.33 no.4
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    • pp.413-422
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    • 2023
  • Urban Air Mobility (UAM) is promising, sustainable and efficient air transportation in a metropolitan area. Korean government has recently announced operation demonstration plans as a step toward commercialization of UAM. However, there is lack of understanding on the potential impact of weather on UAM operation. We collected weather observations from Gimpo International Airport and 5 automatic weather stations (AWS) along UAM corridor of the Han-River to assess weather barriers such as low visibility, wind gust and wind shear. The results show the frequency of low visibility near the corridor fluctuated significantly from year to year depending on the concentration of fine particulate matter (PM2.5) in Seoul. The frequency of high wind speed-shift calculated using 1-minute wind observations was increased not only during the spring season (March, April, and May) but also the beginning of rainy season (Jun). In addition, a chance of high wind shear from 1-minute wind observations varied by the stations, suggesting that the condition is largely affected by topography including a river and high-rise buildings. These basic weather properties suggest that there are substantial weather barriers to UAM operations along the Han-River Corridor, while they cannot properly surveil micro-scale weather conditions in detail such as wind gust and wind shear over the corridor. Thus, this study suggests that potential barriers related to adverse weather need to be evaluated, building high-density weather observations infrastructure prior to UAM demonstration and commercialization.

An Empirical Study on Establishing the Cross-track Corridor Dimension for UAM Operations (도심항공교통(UAM) 운영을 위한 횡적 회랑 규격 실증 연구)

  • Do-hyun Kim;Kyung-han Lee;Hyo-seok Chang;Seung-jun Lee
    • Journal of Advanced Navigation Technology
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    • v.28 no.1
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    • pp.21-26
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    • 2024
  • Urban air mobility (UAM) is being considered as an alternative to transportation in urban areas where traffic congestion is increasing. It is judged that it will be difficult to manage the complex UAM operation environment with the existing Air Traffic Service, which is a person-centered service. Therefore, an advanced information processing-based traffic management system for UAM (UATM) is needed. Airspace management is essential to establish a systematic UAM traffic management (UATM) environment. In particular, the establishment of exclusive corridors where UAM aircraft can operate safely can provide opportunities to operate UAM aircraft without violating the minimum flight altitude regulations. This study conducted an empirical analysis using a helicopter of similar size to UAM to establish the cross-track dimension of the corridor for UAM operation. The research results can be used as a guideline when designing UAM corridors.

A Study on the Operational Risk Assessment of cargo transport Korean Urban Air Mobility(K-UAM) trial operation corridor applying SORA Model (SORA 모델을 적용한 화물운송 한국형 도심항공교통(K-UAM) 시범운용 회랑의 운용위험도 평가 연구)

  • Namgung, Pyeong;Eom, Jeongho;Lee, Seungkeun;Kwon, Thawha
    • Journal of Advanced Navigation Technology
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    • v.26 no.3
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    • pp.125-135
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    • 2022
  • UAM is emerging as the biggest issue in the aviation industry and which is attracting a lot of attention not only domestically but also internationally. In Korea, active research is being conducted centered on the government and industry-university research institutes, such as the establishment of a future K-UAM concept of operation. Therefore, in this study applies the SORA (Specific Operation Risk Assessment) model established by the European JARUS (Joint Authorities for Rulemaking on Unmanned Systems) to apply the K-UAM operation environment and specific corridor for the purpose of cargo transportation that will be operated in the future that the government is promoting. We intend to suggest policy and technical measures for risk mitigation in the initial operating environment by evaluating the level of risk and analyzing the results.

Deep Learning Algorithm Training and Performance Analysis for Corridor Monitoring (회랑 감시를 위한 딥러닝 알고리즘 학습 및 성능분석)

  • Woo-Jin Jung;Seok-Min Hong;Won-Hyuck Choi
    • Journal of Advanced Navigation Technology
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    • v.27 no.6
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    • pp.776-781
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    • 2023
  • K-UAM will be commercialized through maturity after 2035. Since the Urban Air Mobility (UAM) corridor will be used vertically separating the existing helicopter corridor, the corridor usage is expected to increase. Therefore, a system for monitoring corridors is also needed. In recent years, object detection algorithms have developed significantly. Object detection algorithms are largely divided into one-stage model and two-stage model. In real-time detection, the two-stage model is not suitable for being too slow. One-stage models also had problems with accuracy, but they have improved performance through version upgrades. Among them, YOLO-V5 improved small image object detection performance through Mosaic. Therefore, YOLO-V5 is the most suitable algorithm for systems that require real-time monitoring of wide corridors. Therefore, this paper trains YOLO-V5 and analyzes whether it is ultimately suitable for corridor monitoring.K-uam will be commercialized through maturity after 2035.

Research and development of safety corridor simulation environment for Chungbuk-type UAM using GAZEBO (GAZEBO를 활용한 충북형 UAM의 안전회랑 시뮬레이션 환경 연구 개발)

  • Jeonghun Lee;Hoseop Lee;Jaeeun Kim;Hyejeong Lim;Sungwook Cho
    • Journal of Aerospace System Engineering
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    • v.17 no.2
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    • pp.103-110
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    • 2023
  • In order for future UAVs to be used as means of transportation, a simulation environment in which they can be tested in advance is essential. Accordingly, to demonstrate future air transport systems among six future industries of Chungcheongbuk-do, a simulation environment was condensed and built, focusing on virtual safety corridor connecting Osong Station and Cheongju Airport.

A Study on the Criteria for Applying the Obstacle Limitation Surface of the UAM Vertiport (UAM 수직이착륙장(Vertiport)의 장애물제한표면 적용 기준에 대한 연구)

  • TaeJung Yu
    • Journal of the Korean Society for Aviation and Aeronautics
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    • v.31 no.1
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    • pp.18-25
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    • 2023
  • In recent years, UAM (Urban Air Mobility) has emerged as a solution to these urbanization problems, and many related reports and diverse prospects have been reported. UAM flights are planned to take off and land at a Vertiport located in the city center and fly along a pre-established corridor. In order for UAM to operate safely in the city center, it must ensure a safe flight path that avoids the buildings in the city center and many surrounding obstacles. Therefore, in this study, we compared and examined the installation standards of the obstacle limitation surface necessary for UAM to take off and land safely at the Vertiport. First, we analyzed the helicopter obstacle limitation surfaces in Japan and overseas, and the UAM Vertiport installation standards and obstacle limitation surface application standards recently announced at the FAA and EASA. It identified differences and similarities between heliport and Vertiport, and considered improvements to domestic helicopter obstacle limitation surfaces and criteria that could meet FAA and EASA standards.

Case Study Building a Vertiport for UAM Commercialization: Based on the Demonstration in Pontoise-Cormeiles, France (UAM 상용화를 위한 버티포트 구축 사례 연구: 프랑스 퐁투와즈 실증사례를 중심으로)

  • Joomin Kim
    • Journal of the Korean Society of Industry Convergence
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    • v.27 no.1
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    • pp.77-86
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    • 2024
  • Urban Air Mobility (UAM) is considered the future of transportation, offering solutions to urban challenges and reducing environmental issues through the use of electric power and leveraging the sky as a new transportation corridor. UAM has diverse applications, including passenger and goods transportation, emergency rescue operations, patient transfers, and urban tourism. Furthermore, it is poised to revolutionize the transportation landscape, impacting existing infrastructures such as roads and parking lots, along with autonomous vehicles. The UAM industry is anticipated to exert a significant impact on various sectors, including airframe manufacturing, the development of new materials (e.g., fuel cells and batteries), and even the defense industry, resulting in substantial economic benefits. Consequently, conducting proactive research and setting industry standards for UAM takeoff and landing infrastructure is crucial for securing market leadership. In this regard, the case of Pontoise-Cormeiles, France, stands out as it achieved the world's inaugural successful demonstration of a vertiport before the 2024 Olympics. This achievement has significant implications for our preparations for the commercialization of UAMs. Thus, a detailed review of the French vertiport construction case in this study will serve as a foundation for guiding the planning and operation of UAMs in South Korea, particularly in anticipation of upcoming demonstration tests.

UAM Traffic Flow Management Based on Milestone in Collaborative Decision-Making (협력적 의사결정체계(CDM) 마일스톤 기반 도심항공교통(UAM) 흐름관리)

  • Do-hyun Kim;Hyo-seok Chang
    • Journal of Advanced Navigation Technology
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    • v.28 no.4
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    • pp.436-441
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    • 2024
  • Urban air mobility (UAM) is an innovative air traffic management system that utilizes electric vertical take off and landing aircraft(eVTOL) to transport passengers and cargo in urban areas. The corridor can be defined as the airspace that the vehicle operates in and must be collaboratively managed. For the stable operation of UAM, it is essential to have strategic separation and a collaborative decision-making(CDM) system for cooperation and coordination among stakeholders. This study examines the application of time-based milestones from traditional air traffic flow management to the UAM system to ensure safe traffic volume and optimize air traffic flow. For traffic flow management, the milestone time information is categorized into a total of 13 key milestone time indicators based on the UAM movement status, and the sharing entities providing each time indicator and the flow of milestones are defined. Emphasizing the need for a CDM to balance UAM traffic and capacity, sharing and managing milestone information among stakeholders is expected to improve UAM aircraft departure flow and enhance operational efficiency.

A Study on the Prevention of Bird Collision in UAM (UAM 조류 충돌 방지대책 수립에 관한 연구)

  • Daniel Kim;Hee-duk Cho;Seung-woo Lee;Jae-woo Kim
    • Journal of Advanced Navigation Technology
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    • v.28 no.3
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    • pp.338-347
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    • 2024
  • This paper deals with the study of bird collision avoidance measures in UAM operations from an operator's perspective. Urban air traffic is defined as a next-generation transportation system that uses environmentally friendly electric vertical take-off and landing (eVTOL) aircraft to provide transportation services between key points within and around urban centers. For the successful establishment of the UAM industry, it is necessary to ensure safety issues that determine public acceptance. Among the hazards that can occur in aviation operations, preventing bird collisions in urban environments is a measure that can greatly secure operational safety and public acceptance. In addition to physical measures, procedural control measures are required to prevent bird strikes. In order to ensure the safety of UAM operations, this study aims to provide a direction for the establishment of UAM bird collision prevention measures by categorizing bird collision prevention measures into physical and procedural methods and flight sections such as takeoff, landing, and corridor sections. Through this, we hope to contribute to the improvement of the safety of the urban air traffic operation system.