Vertical flight profile optimization for a cruise segment with RTA constraints

被引:18
作者
Dancila, R. [1 ]
Botez, R. [1 ]
机构
[1] Univ Quebec, Ecole Technol Super, Montreal, PQ, Canada
关键词
FMS; RTA; Trajectory optimisation; Vertical flight profile;
D O I
10.1017/aer.2019.47
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
This paper presents the results of a research performed at the Research Laboratory in Active Controls, Avionics and Aeroservoelasticty (LARCASE), at ETS, concerning optimisation strategies for cruise flight segments with imposed flight time (delimited by waypoints with required time of arrival constraints). Specifically, a new algorithm is presented that identifies the optimal vertical navigation profile (flight altitude and speed optimisation) for a cruise segment with imposed lateral navigation profile, bounded by two waypoints with required time of arrival constraints. The set of evaluated vertical navigation profiles are characterised by identical altitudes and speeds at their initial and final waypoints (at the beginning and the end of the cruise segment under optimisation), a maximum of one altitude step (relative to the initial altitude), and are flown at constant speed. This study investigates the flight performance increase (total cost reduction) for a flight along the optimal vertical navigation profile, relative to a flight at the optimal speed and initial cruise altitude. The evaluation was performed using a medium haul transport aircraft flight performance model, for three lateral navigation profiles and three wind profiles. The algorithm is targeted for Flight Management Systems platforms, to provide the optimal flight trajectory for the imposed lateral flight profile and time constraints.
引用
收藏
页码:970 / 992
页数:23
相关论文
共 45 条
[31]   Wind-Optimal Routing in the National Airspace System [J].
Palopo, Kee ;
Windhorst, Robert D. ;
Suharwardy, Salman ;
Lee, Hak-Tae .
JOURNAL OF AIRCRAFT, 2010, 47 (05) :1584-1592
[32]   Flight path optimization at constant altitude [J].
Pargett, Douglas M. ;
Ardema, Mark D. .
JOURNAL OF GUIDANCE CONTROL AND DYNAMICS, 2007, 30 (04) :1197-1201
[33]  
PATRON R. F., 2013, AIAA GUID NAV CONTR
[34]  
PATRON R. F., 2013, 2013 AV TECHN INT OP
[35]  
PATRON R. F., 2013, CASI AERO 2013 C 60
[36]  
Robertson William., 2007, Boeing Aero Quarterly, V4, P23
[37]  
RODRIGUEZ J. M. C., 2007, IEEE AIAA 26 DIG AV
[38]  
SCHREUR JM, 1995, PROCEEDINGS OF THE 1995 AMERICAN CONTROL CONFERENCE, VOLS 1-6, P3419
[39]  
SIDIBE S., 2013, 60 AER C AGM TOR CAN
[40]   Adaptive improvement of aircraft climb performance for Air Traffic Control applications [J].
Slater, GL .
PROCEEDINGS OF THE 2002 IEEE INTERNATIONAL SYMPOSIUM ON INTELLIGENT CONTROL, 2002, :602-607