도심항공교통(UAM) 이착륙장(Vertiport) 입지선정 요인의 중요도에 관한 연구 = A Study on the importance of Vertiport Sites Selection Criteria for Urban Air Mobility

정민철 2022년
논문상세정보
' 도심항공교통(UAM) 이착륙장(Vertiport) 입지선정 요인의 중요도에 관한 연구 = A Study on the importance of Vertiport Sites Selection Criteria for Urban Air Mobility' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Site Selection Criteri
  • UAM (Urban Air Mobility)
  • Vertiport
  • anp
  • dematel
  • mcdm
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' 도심항공교통(UAM) 이착륙장(Vertiport) 입지선정 요인의 중요도에 관한 연구 = A Study on the importance of Vertiport Sites Selection Criteria for Urban Air Mobility' 의 참고문헌

  • 한국형 도심항공교통(K-UAM) 운용개념서 1.0
    UAM Team Korea(국토교통부) [2021]
  • 철도 경쟁 100일의 기록
    한국교통연구원 [2017]
  • 도심형 공중 모빌리티(Urban Air Mobility: UAM) 운영모델과 지상 기반 시설의 유형화
    이재홍 홍성조 도시정책연구, 12권, 1호, pp.89-111 [2021]
  • 도심 항공 모빌리티 산업 동향
    오경륜 이장호 전용민 정기훈 항공우주산업기술 동향, 18권, 1호, pp. 37-48 [2020]
  • 국토교통부
    미래기술 도출을 위한 조사분석 연구, 2020 [2050]
  • `` Urban air mobility : safety challenges ''
    Cokorilo , O. Vol.45pp.21-29 [2020]
  • `` Flying Cars : Investment Implications of Autonomous Urban Air Mobility
  • Yang, Y. P., Shieh, H. M., Leu, J. D. and Tzeng, G. H., “A novel hybrid MCDM model combined with DEMATEL and ANP with applications”, International Journal of Operations Research, Vol.5, No.3(2008), pp.160-168.
    [2008]
  • Wu, Z., and Zhang, Y., “Integrated Network Design and Demand Forecast for On-Demand Urban Air Mobility”, Engineering, Vol.7, No.4(2021), pp.473-487.
  • Wei, L., Justin, C. Y. and Mavris, D. M., “Optimal Placement of Airparks for STOL Urban and Suburban Air Mobility”, AIAA Scitech 2020 Forum, 2020.
    [2020]
  • Vascik, P. D., Hansman, R. J. and Dunn, N. S., "Analysis of urban air mobility operational constraints", Journal of Air Transportation, Vol.26(2018), pp.133-146.
    [2018]
  • Vascik, P. D and Hansman, R. J, “Evaluation of Key Operational Constraints Affecting On-Demand Mobility for Aviation in the Los Angeles Basin: Ground Infrastructure, Air Traffic Control and Noise”, 17th AIAA Aviation Technology, Integration, and Operations Conference, Denver, 2017.
    [2017]
  • Using the extension of DEMATEL to integrate hotel service quality perceptions into a cause-effect model in uncertainty
    Tseng , M. L. Vol.36 , no.5 ( [2009]
  • Urban Traffic Management Concept of Operations
    EMBRAER Version 1 ) [2020]
  • Uber Elevate, "CORGAN Skyport mobility Hub, Charging and Power Solutions", Uber Elevate Summit, Washington D.C, 2019.
    [2019]
  • UAM Team Korea(국토교통부), K-UAM 기술개발 로드맵
    국토교통부 [2021]
  • UAM Team Korea(국토교통부), K-UAM Road Map
    국토교통부 [2020]
  • Tzeng, G. H., Chiang, C. H. and Li, C. W., “Evaluating inter-twined effects in e-learning programs: a novel hybrid MCDM model based on factor analysis and DEMATEL,” Expert Systems with Applications, Vol.32, no.4(2007), pp.1028-1044.
    [2007]
  • The analytical hierarchy process , planning , priority , resource allocation
  • The Future of Vertical Mobility
  • The Analytic Hierarchy and Analytic Network Measurement Processes : Applications to Decisions under Risk
    Saaty , T. L. Vol.1 , No.1 ( [2008]
  • Tarafdar, S., Rimjha, M., Hinze, N., Hotle, S. and Trani, A. A., “Urban air Mobility Regional Landing Site Feasibility and Fare Model Analysis in the Greater Northern California Region”, 2019 Integrated Communications, Navigation and Surveillance Conference (IEEE), 2019.
    [2019]
  • Syed, N., Rye, M., Ade, M., Trani, A., Hinze, N., Swingle, H., Smith, J., Dollyhigh, S. and Marien, T., “ODM commuter aircraft demand estimation”, 17th AIAA Aviation Technology, Integration, and Operations Conference, Denver, 2017.
    [2017]
  • Straubinger, A., Verhoef, E. T. and Groot, H. L., “Will urban air mobility fly? The efficiency and distributional impacts of UAM in different urban spatial structures”, Transportation Research Part C: Emerging Technologies, Vol.127(2021)
  • Straubinger, A., Rothfeld, R., Shamiyeh, M., Büchter, K. D., Kaiser, J. and Plötner, K. O., “An overview of current research and developments in urban air mobility–Setting the scene for UAM introduction”, Journal of Air Transport Management, Vol.87(2020)
    [2020]
  • Si, S. L., You, X. Y., Liu, H. C. and Zhang, P., “DEMATEL technique: A systematic review of the state-of-the-art literature on methodologies and applications”, Mathematical Problems in Engineering, Vol. 2018, ID Article 3696457(2018)
    [2018]
  • Shaw-Lecerf, M., Al Paris, A., Ingram, C., Gu, F. and Chung, W., “Developing Urban Air Mobility Vehicle Models to Support Air Traffic Management Concept Development”, AIAA Aviation 2020 Forum, 2020.
    [2020]
  • Shaheen, S., Adam, C., Emily, F., ‘The potential societal barriers of urban air mobility (UAM)”, NASA Booz Allen Hamilton, 2018.
    [2018]
  • Saaty, T. L., and Vargas, L. G., “Models, methods, concepts & applications of the analytic hierarchy process”, Springer Science, Boston, 2001.
    [2001]
  • Saaty, T. L. and Vargas, L. G., “The analytic network process. In Decision making with the analytic network process”, Springer, Boston, 2013
    [2013]
  • Roy, S., Herniczek, M. T. K, German, B. J., and Garrow, L. A., “User Base Estimation Methodology for an eVTOL Business Airport Shuttle Air Taxi Service”, AIAA Aviation 2020 Forum, 2020.
    [2020]
  • Rothfeld, R., Fu, M., Balac, M. and Antonioua, C., “Potential Urban Air Mobility Travel Time Savings: An Exploratory Analysis of Munich, Paris, and San Francisco”, Sustainability, Vol.13, No.4:2217(2021).
  • Rimjha, M. and Trani, A., “Urban Air Mobility: Factors Affecting Vertiport Capacity”, In 2021 Integrated Communications Navigation and Surveillance Conference(IEEE), Dulles, USA, 2021.
  • Rajendran, S. and J. Zack, "Insights on strategic air taxi network infrastructure locations using an iterative constrained clustering approach", Transportation Research Part E: Logistics and Transportation Review, Vol.128(2019), pp.470-505.
    [2019]
  • Plötner, K. O., Al Haddada, C., Antonioua, C., Frank, F., Fu, M., Kabel, S., Llorca, C., Moeckel, R., Moreno, A. T., Pukhova, A., Rothfeld, R., Shamiyeh, M., Straubinger, A., Wagner, H. and Zhang, Q., “Long-term Application Potential of Urban Air Mobility Complementing Public Transport: An Upper Bavaria Example.”, CEAS Aeronautical Journal, Vol.11(2020), pp.991-1007.
  • Patterson, M. D., Antcliff, K. R. and Kohlman, L. W., "A Proposed Approach to Studying Urban Air Mobility Missions Including an Initial Exploration of Mission Requirements", NASA Technical Reports Server(www.ntrs.nasa.gov), 2018.
    [2018]
  • Pamucar, D. and Cirovi, G., “selection of transport and handling resources in logistics centers using Multi-Attributive Border Approximation area Comparison (MABAC)”, Expert Systems with Applications, Vol.42, no.6 (2015), pp.3016-3028.
    [2015]
  • NASA, “High Density Automated Vertiport Concept of Operation”, NUAIR and NASA, 2021.
  • NASA, "Urban Air Mobility(UAM) Market Study", NASA Technical Reports Server(www.ntrs.nasa.gov), 2018.
    [2018]
  • NASA, "UAM Vision Concept of Opertaions(ConOps) UAM Maturity Levle (UML)4", NASA Technical Reports Server(www. ntrs.nasa.gov), 2020.
    [2020]
  • Morgan Stanley, "eVTOL/Urban Air Mobility TAM Update: A Slow Take-Off, But Sky's the Limit”, Morgan Stanley Research Global Foundation, 2021.
  • Mayor, T. and Anderson, J., “Getting mobility off the ground”, KPMG, 2019.
    [2019]
  • Malte Niklaß, M., Dzikus, N., Swaid, M., Berling, J., Lührs, B., Lau, A., Terekhov, I., and Gollnick, V., "A Collaborative approach for an integrated modeling of urban air transportation systems", (www. mdpi.com/journal/aerospace), 2020.
    [2020]
  • Maheshwari, A., Mudumba, S. V., Sells, B. E., DeLaurentis, D. A., and Crossley, W. A., “Identifying and Analyzing Operations Limits for Passenger-Carrying Urban Air Mobility Missions”, AIAA AVIATION 2020 FORUM, 2020.
    [2020]
  • Liou, J. J. H., Yen, L. and Tzeng, G. H., “Building an effective safety management system for airlines”, Journal of Air Transport Management, Vol.14, no.1(2008), pp.20-26.
    [2008]
  • Lim, E. and Hwang, H., “The Selection of Vertiport site for On-Demand Mobility and Its Application to Seoul Metro Area”, International Journal of Aeronautical and Space Sciences, Vol.20(2019), pp.260-272.
    [2019]
  • Johnson T., Riedel R., and Sahdev S., “To take off, flying vehicles first need places to land”, McKinsey & Company, New York City, 2020.
    [2020]
  • Jeong, J. Y., So, M. J., and Hwang, H. Y., “Selection of Vertiports Using K-Means Algorithm and Noise Analyses for Urban Air Mobility(UAM) in the Seoul Metropolitan Area”, Applied Sciences, Vol.11, No.12:5729(2021).
  • Jeong, J. S., Garcıa-Moruno, L., Hernandez-Blanco, J. and Sanchez-Rıos, A., “Planning of rural housings in reservoir areas under (mass) tourism based on a fuzzy DEMATEL-GIS/MCDA hybrid and participatory method for Alange, Spain”, Habitat International, Vol.57(2016), pp.143-153,
    [2016]
  • Infrastructure barriers to the elevated future of mobility
    Deloitte [2019]
  • Induced demand : Its Definition , Measurement and Significance
  • Gigovic, L., Pamucar, D., Lukic, D and Markovic, S., “GIS-Fuzzy DEMATEL MCDA model for the evaluation of the sites for ecotourism development: a case study of ‘Dunavski kljuc’ region, Serbia”, Land Use Policy, Vol.58(2016), pp.348-365.
    [2016]
  • Galicia, L. D., Rajbhandari, R., Cheu, R. L. and Aldrete, R. M., “Analysis of Transit Service Coverage Level-of-Service Measures at Border Regions and Suggested Alternative Procedure”, Transportation Research Record: Journal of the Transportation Research Board, Vol.2216(2011), pp.139-147
    [2011]
  • Fu, M., Straubinger, A., and Schaumeier, J., “Scenario-based Demand Assessment of Urban Air Mobility in the Greater Munich Area”, AIAA Aviation 2020 Forum, 2020.
    [2020]
  • Fu, M., Rothfeld, R. and Antoniou, C., "Exploring preferences for transportation modes in an urban air mobility environment: Munich case study", Transportation Research Record: Journal of the Transportation Research Board, Vol.2673, No.10(2019), pp.427-442.
    [2019]
  • Fetanat, A. and Khorasaninejad, E., “A novel hybrid MCDM approach for ofshore wind farm site selection: a case study of Iran”, Ocean & Coastal Management, Vol.109(2015), pp.17-28
    [2015]
  • Estimating demand for an eVTOL air taxi service using discrete choice modeling
  • Edwards, T. and Price, G., "eVTOL Passenger Acceptance", NASA Technical Reports Server(www.ntrs.nasa.gov), 2020.
    [2020]
  • Decision making with dependence and feedback : the analytic network process : The organization and prioritization of complexity
  • Daskilewicz, M., German, B., Warren, M., Garrow, L. A., Boddupalli, S. and Douthat, T. H., “Progress in Vertiport Placement and Estimating Aircraft Range Requirements for eVTOL Daily Commuting”, 2018 Aviation Technology, Integration, and Operations Conference; American Institute of Aeronautics and Astronautics, Atlanta, USA, 2018.
    [2018]
  • Concept of Oerations v1.0 . Urban Air Mobility ( UAM )
    FAA [2020]
  • Cohen, A. P., Shaheen, S. A. and Farrar, E. M., “Urban Air Mobility: History, Ecosystem, Market Potential, and Challenges”, IEEE Transactions on Intelligent Transportation Systems, Vol.22, No.9(2021), pp.6074-6087.
  • Chen, Y., Jin, Q., Fang, Q., Lei, H., Hu, J., Wu, Y., Chen, J., Wang, C. and Wan, Y., “Analytic network process: Academic insights and perspectives analysis”, Journal of Cleaner Production, Vol.235(2019), pp.1276-1294.
    [2019]
  • Behme, J. and Planing, P., “Air Taxis as a Mobility Solution for Cities-Empirical Research on Customer Acceptance of Urban Air Mobility Innovations for Metropolitan Areas", In Planing P., Müller P., Dehdari P. and Bäumer T. (eds) “Innovations for Metropolitan Areas”, Springer, Berlin, 2020.
    [2020]
  • Baykasoglu, A., Kaplanoglu,V., Durmusoglu, Z.D.U. and Sahin, C., “Integrating fuzzy DEMATEL and fuzzy hierarchical TOPSIS methods for truck selection”, Expert Systems with Applications, Vol.40, no.3(2013), pp.899-907.
    [2013]
  • Al Haddada, C., Chaniotakisb, E., Straubinger, A., Plotner, K. and Antonioua, C., "Factors affecting the adoption and use of urban air Mobility", Transportation Research Part A : Policy and Practice, Vol.132(2020), pp.696-712.
    [2020]
  • A combined MCDM model based on DEMATEL and ANP for the selection of airline service quality improvement criteria : A study based on the Taiwanese airline industry
    Chen , I. S. Vol.57pp.7-18 [2016]
  • A GIS-based Analysis for Selecting Ground Infrastructure sites for Urban Air Mobility