Intelligent and Autonomous Flight Technology for Launch Vehicles

被引:2
作者
SONG Zhengyu [1 ]
机构
[1] China Academy of Launch Vehicle Technology
关键词
intelligent flight; launch vehicle; autonomous; hierarchical model; dynamic trajectory planning;
D O I
暂无
中图分类号
V448.1 [火箭的制导与控制]; V475.1 [运载火箭];
学科分类号
081105 ; 082503 ;
摘要
This paper proposes the architecture of an intelligent flight launcher system as well as fundamental solutions to capability prediction and dynamic planning. This effort reflects the latest progress in the applications of intelligent and autonomous technology for launcher flights. The paper first describes the characteristics and capabilities of intelligent and autonomous systems and classifies various related technologies. In the context of intelligent and autonomous technology in aerospace engineering, it then focuses on technical difficulties involved with intelligent flight and reviews developments in the field. An E;classification model of an intelligent flight launcher is then proposed and its application scenarios are discussed. Based on an intelligent flight system configuration of the launcher, the online trajectory planning and initial value guess are examined, and vertical landing is provided as an example to explain the effects of the implementation of computational intelligence to flight systems.
引用
收藏
页码:3 / 15
页数:13
相关论文
共 50 条
  • [41] Autonomous Flight Vehicle Incorporating Artificial Intelligence
    Makadia, Jeet
    Pashchapur, Ravi
    Dhulasawant, Tushar
    Gopal, Yakshith G.
    Raj, Deepak P. Y.
    2020 INTERNATIONAL CONFERENCE ON COMPUTATIONAL PERFORMANCE EVALUATION (COMPE-2020), 2020, : 419 - 425
  • [42] The Falcon I launch vehicle - Steps to and results from first flight
    Koenigsmann, Hans
    Shotwell, Gwynne E.
    JBIS-JOURNAL OF THE BRITISH INTERPLANETARY SOCIETY, 2007, 60 (08): : 289 - 293
  • [43] Structure Design and Generation of Bookbinding parameters for Launch Vehicle Flight Software
    Ye Mao
    Sa Ri-na
    Fan Yong-Guan
    2020 3RD WORLD CONFERENCE ON MECHANICAL ENGINEERING AND INTELLIGENT MANUFACTURING (WCMEIM 2020), 2020, : 73 - 76
  • [44] Adaptive flight control for a launch vehicle based on the concept of dynamic inversion
    Butu, Florentin-Alin
    Lungu, Romulus
    Barbulescu, Lucian-Florentin
    2016 20TH INTERNATIONAL CONFERENCE ON SYSTEM THEORY, CONTROL AND COMPUTING (ICSTCC), 2016, : 812 - 817
  • [45] Emerging Research in the Security of Modern and Autonomous Vehicles
    Tout, Samir
    Abualkibash, Munther
    Patil, Pooj A.
    2018 IEEE INTERNATIONAL CONFERENCE ON ELECTRO/INFORMATION TECHNOLOGY (EIT), 2018, : 543 - 547
  • [46] Concept of Operations Development for Autonomous and Semi-Autonomous Swarm of Robotic Vehicles
    Laarni, Jari
    Koskinen, Hanna
    Vaatanen, Antti
    COMPANION OF THE 2017 ACM/IEEE INTERNATIONAL CONFERENCE ON HUMAN-ROBOT INTERACTION (HRI'17), 2017, : 179 - 180
  • [47] Study on buffeting test of large diameter fairing launch vehicles selection
    Wang G.
    Yan Z.
    Ji C.
    Tang W.
    Wei Y.
    Beijing Hangkong Hangtian Daxue Xuebao/Journal of Beijing University of Aeronautics and Astronautics, 2023, 49 (12): : 3230 - 3236
  • [48] Impact of Geographical and Logistics Considerations on the Life Cycle Assessment of Launch Vehicles
    Bellier, Thomas
    Bil, Cees
    Morlier, Joseph
    Urbano, Annafederica
    Pudsey, Adrian
    2023 ASIA-PACIFIC INTERNATIONAL SYMPOSIUM ON AEROSPACE TECHNOLOGY, VOL II, APISAT 2023, 2024, 1051 : 1558 - 1568
  • [49] State of Desert Phytocenoses in the Republic of Kazakhstan at Crash Sites of Launch Vehicles
    Lednev, S. A.
    Semenkov, I. N.
    Koroleva, T., V
    Sharapova, A., V
    ARID ECOSYSTEMS, 2020, 10 (03) : 244 - 250
  • [50] Ascent Trajectory Optimization of Launch Vehicles with Air-Breathing Propulsion
    Mukundan, Vijith
    Maity, Arnab
    Kumar, Shashi Ranjan
    Rajeev, U. P.
    IFAC PAPERSONLINE, 2019, 52 (12): : 274 - 279