Flight Test and Evaluation of a Prototype Sense and Avoid System Onboard a ScanEagle Unmanned Aircraft

被引:7
|
作者
Wilson, Michael [1 ]
Ryan, Daniel [1 ]
Bratanov, Dmitry [2 ]
Wainwright, Alexander [2 ]
Ford, Jason [2 ]
Cork, Lennon [3 ]
Brouckaert, Michael [3 ]
机构
[1] Boeing Res & Technol Australia, Level 7,150 Charlotte St, Brisbane, Qld 4001, Australia
[2] Queensland Univ Technol, Australian Res Ctr Aerosp Automat, 22-24 Boronia Rd, Brisbane Airport, Qld 4008, Australia
[3] Insitu Pacific Pty Ltd, 95 Mina Parade, Alderley, Qld 4051, Australia
关键词
D O I
10.1109/MAES.2016.150128
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
For over 100 years manned aviation has been based on pilots seeing and avoiding other aircraft. During this time aviation has evolved to a point where there were 37.4 million commercial flights scheduled in 2014 [1]. The national airspace system (NAS) of each country is a complex system-of-systems involving air traffic control, a network of navigation and communication facilities, airports, controlled and uncontrolled airspace, and the associated rules and regulations for each part of this system. It is into this system that we are now introducing unmanned aircraft systems (UAS) for commercial and civilian applications. © 2016 IEEE.
引用
收藏
页码:6 / 15
页数:10
相关论文
共 50 条
  • [21] Sense and avoid technologies with applications to unmanned aircraft systems: Review and prospects
    Yu, Xiang
    Zhang, Youmin
    PROGRESS IN AEROSPACE SCIENCES, 2015, 74 : 152 - 166
  • [22] Flight Test of a Radar-Based Tracking System for UAS Sense and Avoid
    Accardo, Domenico
    Fasano, Giancarmine
    Forlenza, Lidia
    Moccia, Antonio
    Rispoli, Attilio
    IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS, 2013, 49 (02) : 1139 - 1160
  • [23] Dynamic control allocation between onboard and delayed remote control for unmanned aircraft system detect-and-avoid
    Tabassum, Asma
    Bai, He
    AEROSPACE SCIENCE AND TECHNOLOGY, 2022, 121
  • [24] Unmanned Aircraft System Airspace Integration in the National Airspace Using a Ground-Based Sense and Avoid System
    Spriesterbach, Thomas P.
    Bruns, Kelly A.
    Baron, Lauren I.
    Sohlke, Jason E.
    JOHNS HOPKINS APL TECHNICAL DIGEST, 2013, 32 (03): : 572 - 583
  • [25] Unmanned aircraft system airspace integration in the national airspace using a ground-based sense and avoid system
    Spriesterbach, Thomas P.
    Bruns, Kelly A.
    Baron, Lauren I.
    Sohlke, Jason E.
    Johns Hopkins APL Technical Digest (Applied Physics Laboratory), 2013, 32 (03): : 572 - 583
  • [26] Simple sense and avoid system for Unmanned Aerial Vehicles
    Stulgis, Adam
    Ambroziak, Leszek
    Kondratiuk, Miroslaw
    Nikonowicz, Arkadiusz
    MECHATRONICS SYSTEMS AND MATERIALS 2018, 2018, 2029
  • [27] Sense and avoid for small unmanned aircraft systems: Research on methods and best practices
    Skowron, Michal
    Chmielowiec, Witold
    Glowacka, Karolina
    Krupa, Magdalena
    Srebro, Adam
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 2019, 233 (16) : 6044 - 6062
  • [28] SENSE AND AVOID FOR UNMANNED AIRCRAFT SYSTEMS (vol 31, pg 82, 2016)
    Fasano, G.
    Accado, D.
    Moccia, A.
    Moroney, D.
    IEEE AEROSPACE AND ELECTRONIC SYSTEMS MAGAZINE, 2017, 32 (04) : 61 - 62
  • [29] Avionics Sensor Fusion for Small Size Unmanned Aircraft Sense-and-Avoid
    Ramasamy, Subramanian
    Sabatini, Roberto
    Gardi, Alessandro
    2014 IEEE INTERNATIONAL WORKSHOP ON METROLOGY FOR AEROSPACE (METROAEROSPACE), 2014, : 271 - 276
  • [30] A Vision Based Sense and Avoid System for Small Unmanned Helicopter
    Lyu, Yang
    Pan, Quan
    Zhao, Chunhui
    Zhu, Haifeng
    Tang, Tongguo
    Zhang, Yizhai
    2015 INTERNATIONAL CONFERENCE ON UNMANNED AIRCRAFT SYSTEMS (ICUAS'15), 2015, : 586 - 592