Anti-Collision System for Small Civil Aircraft

被引:1
|
作者
Dzunda, Milan [1 ]
Dzurovcin, Peter [1 ]
Melnikova, Lucia [1 ]
机构
[1] Tech Univ Kosice, Fac Aeronut, Dept Air Transport Management, Kosice 04001, Slovakia
来源
APPLIED SCIENCES-BASEL | 2022年 / 12卷 / 03期
关键词
anti-collision system; flying object; accuracy; aviation communication network;
D O I
10.3390/app12031648
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This paper presents the results of the research in the field of anti-collision systems for small civil aircraft, which are not dependent on secondary radars and satellite navigation systems. The aviation communication network was used to design the anti-collision system. The simulation results manifested that the anti-collision system precision depended on the errors of synchronization of the aviation communication network. The precision of the anti-collision system is also influenced by the errors of the coordinates of individual aviation communication network users, based on which the system identifies its own position. The results of the simulation show that the dispersion of the positioning error sigma(2)( increment P) by the ACS system varied in the range of 1.94 m(2) to 503.23 m(2). The simulation results confirm that the designed anti-collision system is operational in establishing its position against other FOs, with the distance from the given FOs being 50.0 km maximum. The main contribution of this paper are derived algorithms for the operation of an anti-collision system for small civil aircraft, in addition to the design of movement trajectory models of five flying objects which operate within the aviation communication network. The advantage of the anti-collision system is that it is independent of satnav systems and secondary radars. A significant advantage is the low cost of this system.
引用
收藏
页数:17
相关论文
共 50 条
  • [1] DINADE SYSTEM AS AN ANTI-COLLISION DEVICE
    AUGENBLI.HA
    SAE TRANSACTIONS, 1968, 77 : 97 - &
  • [2] Automated Anti-Collision System for Automobiles
    Sanjana, Tasneem
    Fuad, Kazi Ahmed Asif
    Habib, Mehrab Masayeed
    Rumel, Ahmed Amin
    2017 INTERNATIONAL CONFERENCE ON ELECTRICAL, COMPUTER AND COMMUNICATION ENGINEERING (ECCE), 2017, : 866 - 870
  • [3] Nozzle anti-collision protection system
    不详
    AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY, 2009, 81 (01): : 89 - 89
  • [4] Research of Four-axis Aircraft Using WIFI and Rotary Anti-collision System
    Lee, Hai-Wu
    Zhu, Ying
    Shi, Xiao
    Peng, Fan-Fan
    Jin, Wen-Jia
    PROCEEDINGS OF 4TH IEEE INTERNATIONAL CONFERENCE ON APPLIED SYSTEM INNOVATION 2018 ( IEEE ICASI 2018 ), 2018, : 665 - 668
  • [5] ANTI-COLLISION
    CHABROL, J
    JOURNAL OF THE INSTITUTE OF NAVIGATION, 1970, 23 (03): : 396 - &
  • [6] Design of the aircraft anti-collision lamp power controller tester
    Yang Fan
    Ying Chaolong
    PROCEEDINGS OF THE FIFTH INTERNATIONAL SYMPOSIUM ON TEST AUTOMATION & INSTRUMENTATION, VOLS 1 AND 2, 2014, : 363 - 368
  • [7] Design of anti-collision algorithm in RFID system
    Shen, Yuchao
    Shen, Shuqun
    Fan, Rong
    Xu, Daxiong
    Dianzi Kexue Xuekan/Journal of Electronics, 1999, 21 (05): : 702 - 705
  • [8] ANALYSIS OF ANTI-COLLISION ALGORITHMS IN RFID SYSTEM
    Wang, Weidong
    Zhang, Yinghai
    Sang, Yuan
    Wang, Shoufeng
    PROCEEDINGS OF 2009 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS TECHNOLOGY AND APPLICATIONS, 2009, : 58 - 62
  • [9] An Improved Anti-collision Algorithm in RFID System
    Ma, Jia-lin
    Wei, Xu
    HIS 2009: 2009 NINTH INTERNATIONAL CONFERENCE ON HYBRID INTELLIGENT SYSTEMS, VOL 3, PROCEEDINGS, 2009, : 138 - 141
  • [10] Formal Verification of a Rover Anti-collision System
    Ge, Ning
    Jenn, Eric
    Breton, Nicolas
    Fonteneau, Yoann
    CRITICAL SYSTEMS: FORMAL METHODS AND AUTOMATED VERIFICATION, 2016, 9933 : 171 - 188