A Simulation Study of Urban Air Mobility Concept in Layered Airspace Environment

被引:0
|
作者
Wang, Maolin [1 ,2 ,3 ]
Fu, Shenghao [3 ]
Lv, Renli [1 ,2 ]
Yu, Nan [3 ]
机构
[1] Civil Aviat Management Inst China, CAAC, Key Lab Gen Aviat Operat, Beijing, Peoples R China
[2] Gen Aviat Res Inst Zhejiang Jiande, Zhejiang Jiande Key Lab Gen Aviat Operat Technol, Hangzhou, Peoples R China
[3] State Key Lab Air Traff Management Syst & Technol, Nanjing, Peoples R China
来源
PROCEEDINGS OF THE 2021 ASIA-PACIFIC INTERNATIONAL SYMPOSIUM ON AEROSPACE TECHNOLOGY (APISAT 2021), VOL 2 | 2023年 / 913卷
基金
中国国家自然科学基金;
关键词
Urban air mobility; Layered airspace; Modelling and simulation; Nonlinear dynamic inversion;
D O I
10.1007/978-981-19-2635-8_72
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
This paper focuses primarily on urban air mobility (UAM), including air transportation for passengers and goods in metropolitan areas. Simulations of UAM in urban environment are conducted. Firstly, quadrotor configuration is determined as the research object of this paper. Based on the flight dynamic equations, the 6-DOF mathematical model of quad-rotor UAS is established. A flight control law based on nonlinear dynamic inversion method is designed for the quadrotor to follow the expected path. Then, the airspace below 120 m is divided into several layers. UAM aircrafts with a similar flight heading fly in a same layer and the vertical separation of high risk UAM aircrafts can be maintained. The flight profile of UAM aircraft is designed based on the layered airspace, including the flight attitude and heading in the flight phases. Finally, to verify the concept proposed in this paper, several mathematic simulations are conducted based on the urban airspace environment described above. The simulations include complete flight processes of multi-UAM in layered airspace. The simulation data is collected and results are analyzed. It is concluded that with proper management of airspace and flight control algorithm, this work is able to simulate the UAM operation in urban environment. The proposed airspace management method could be effective to guarantee the flight safety of UAM. At last of this paper, the research conclusion and expected future work are discussed.
引用
收藏
页码:973 / 987
页数:15
相关论文
共 50 条
  • [31] A New Mobility Era: Stakeholders' Insights regarding Urban Air Mobility
    Koumoutsidi, Annitsa
    Pagoni, Ioanna
    Polydoropoulou, Amalia
    SUSTAINABILITY, 2022, 14 (05)
  • [32] Dynamic Capacity Management for Air Traffic Operations in High Density Constrained Urban Airspace
    Patrinopoulou, Niki
    Daramouskas, Ioannis
    Badea, Calin Andrei
    Veytia, Andres Morfin
    Lappas, Vaios
    Ellerbroek, Joost
    Hoekstra, Jacco
    Kostopoulos, Vassilios
    DRONES, 2023, 7 (06)
  • [33] Prototyping Urban Environments Towards Extended Reality-Based Human Machine Interfaces for Advanced Air Mobility and Urban Air Mobility
    De Crescenzio, Francesca
    Araujo, Millene Gomes
    DESIGN TOOLS AND METHODS IN INDUSTRIAL ENGINEERING IV, ADM 2024, VOL 1, 2025, : 509 - 516
  • [34] The Environmental Life Cycle Costs (ELCC) of Urban Air Mobility (UAM) as an input for sustainable urban mobility
    Liberacki, Adam
    Trincone, Barbara
    Duca, Gabriella
    Aldieri, Luigi
    Vinci, Concetto Paolo
    Carlucci, Fabio
    JOURNAL OF CLEANER PRODUCTION, 2023, 389
  • [35] Modelling mode choice including urban air mobility - a case-study of Munich
    Fu, Mengying
    Antoniou, Constantinos
    Rothfeld, Raoul
    Straubinger, Anna
    URBAN MOBILITY - SHAPING THE FUTURE TOGETHER, 2019, 41 : 45 - 47
  • [36] Overall eVTOL aircraft design for urban air mobility
    Zhang, Jiechao
    Liu, Yaolong
    Zheng, Yao
    GREEN ENERGY AND INTELLIGENT TRANSPORTATION, 2024, 3 (02):
  • [37] On the design of environmentally sustainable aircraft for urban air mobility
    Afonso, Frederico
    Ferreira, Ana
    Ribeiro, Ines
    Lau, Fernando
    Suleman, Afzal
    TRANSPORTATION RESEARCH PART D-TRANSPORT AND ENVIRONMENT, 2021, 91
  • [38] Emerging Trends in Urban Air Mobility: An Extensive Review
    Tripaldi, Francesco
    Vianello, Stefano
    Bianchi, Nicola
    ENERGIES, 2025, 18 (06)
  • [39] Factors affecting the adoption and use of urban air mobility
    Al Haddad, Christelle
    Chaniotakis, Emmanouil
    Straubinger, Anna
    Ploetner, Kay
    Antoniou, Constantinos
    TRANSPORTATION RESEARCH PART A-POLICY AND PRACTICE, 2020, 132 (132) : 696 - 712
  • [40] A Traffic Demand Analysis Method for Urban Air Mobility
    Bulusu, Vishwanath
    Onat, Emin Burak
    Sengupta, Raja
    Yedavalli, Pavan
    Macfarlane, Jane
    IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, 2021, 22 (09) : 6039 - 6047