AUTOMATIC DEPENDENT SURVEILLANCE - BROADCAST FOR SURVEILLANCE OF UNMANNED AIRCRAFT SYSTEM

被引:0
|
作者
Cho, Taehwan [1 ,2 ]
机构
[1] Republ Korea Air Force Acad, Cheongju, South Korea
[2] George Washington Univ, Inst Space Policy, Washington, DC 20052 USA
关键词
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Unmanned Aircraft System (UAS) must fly only with IFR (Instrument Flight Rule), not with VFR (Visual Flight Rule). Therefore, air surveillance systems such as radar are very important. However, the radar provides aircrafts position every 5 similar to 10 seconds, also if the aircrafts size is small, it is difficult to obtain the aircrafts position. Automatic Dependent Surveillance - Broadcast (ADS-B) is a new technology that is redefining the paradigm of communications, navigation, and surveillance in air traffic management today. ADS-B allows UAS pilots and air traffic controllers to see and control aircraft with more precision than before. According to recent studies, the position accuracy of conventional radar is up to 600 ft. However, ADS-B achieves a position accuracy of around 100 ft. Also, the ADS-B provides aircrafts position every 1 second. To enhance the position accuracy of ADS-B, an improved aircraft tracking method is proposed. The method can not only improve the aircraft tracking performance but also track aircraft continually when the aircraft position data losses occur.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Integrated Display and Simulation for Automatic Dependent Surveillance-Broadcast and Traffic Collision Avoidance System Data Fusion
    Wang, Yanran
    Xiao, Gang
    Dai, Zhouyun
    [J]. SENSORS, 2017, 17 (11):
  • [42] Security Issues in Automatic Dependent Surveillance-Broadcast (ADS-B): A Survey
    Wu, Zhijun
    Shang, Tong
    Guo, Anxin
    [J]. IEEE ACCESS, 2020, 8 : 122147 - 122167
  • [43] Safety Benefit of Automatic Dependent Surveillance-Broadcast Traffic and Weather Uplink Services
    Silva, Sathya S.
    Jensen, Luke
    Hansman, Robert J., Jr.
    [J]. JOURNAL OF AEROSPACE INFORMATION SYSTEMS, 2015, 12 (08): : 579 - 586
  • [44] Jamming Suppression for Automatic Dependent Surveillance-broadcast Based on Minimum Dispersion Method
    Wang Wenyi
    Liu Shenyue
    Wu Renbiao
    Lu Dan
    Wang Lu
    Jia Qiongqiong
    [J]. JOURNAL OF ELECTRONICS & INFORMATION TECHNOLOGY, 2018, 40 (04) : 898 - 904
  • [45] Flight Extraction and Phase Identification for Large Automatic Dependent Surveillance-Broadcast Datasets
    Sun, Junzi
    Ellerbroek, Joost
    Hoekstra, Jacco
    [J]. JOURNAL OF AEROSPACE INFORMATION SYSTEMS, 2017, 14 (10): : 566 - 571
  • [46] Aircraft used as a sensor for atmospheric behaviour determination. Practical case: pressure estimation using automatic dependent surveillance-broadcast
    Alonso Alarcon, Jose F.
    Saez Nieto, Francisco J.
    Garcia-Heras Carretero, Javier
    [J]. PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 2013, 227 (G5) : 778 - 797
  • [47] Broadcast Control of Radar Surveillance System
    Fujishima, Yasuo
    Azuma, Shun-ichi
    [J]. 2018 57TH ANNUAL CONFERENCE OF THE SOCIETY OF INSTRUMENT AND CONTROL ENGINEERS OF JAPAN (SICE), 2018, : 83 - 88
  • [48] Simulation of Unmanned Aircraft System Performing Surveillance Mission Based on Advanced Distributed Architecture
    Ji, Hongxia
    Yao, Peng
    Wang, Honglun
    Wu, Jianfa
    [J]. 2018 IEEE CSAA GUIDANCE, NAVIGATION AND CONTROL CONFERENCE (CGNCC), 2018,
  • [49] Development of experimental automatic dependent surveillance system and inflight performances
    Ishide, A
    Fujita, M
    Niimi, K
    Matsuzaki, F
    Yukawa, K
    [J]. ELECTRONICS AND COMMUNICATIONS IN JAPAN PART I-COMMUNICATIONS, 1996, 79 (04): : 35 - 45
  • [50] Automatic dependent surveillance in the air traffic system - A probabilistic approach
    Navarrete, M
    Cugnasca, P
    [J]. PROBABILISTIC SAFETY ASSESSMENT AND MANAGEMENT, VOL 1- 6, 2004, : 494 - 500