Title :
Real-time adjustment strategy for conflict-free taxiing route of A-SMGCS aircraft on airport surface
Author :
Xiao Luo ; Yong Tang ; Honggang Wu ; Donglin He
Author_Institution :
Second Res. Inst., CAAC, Chengdu, China
Abstract :
With regard to the real-time adjustment for conflict-free taxiing route planning of A-SMGCS aircrafts on airport surface, a colored taxiway-oriented Petri net model was proposed. The process of aircrafts accessing an airport road section according to the planned time windows could be interpreted as the access priority of aircrafts for a road section. Aircraft taxiing route was adjusted by decreasing the priority of delayed aircrafts to access road section, which could avoid long waits. To change priorities of aircrafts may lead to two kinds of conflicts: head-on conflicts and circular wait conflicts. Sufficient condition and priority change strategy of aircrafts conflict-free taxiing were proposed to solve those conflicts. The result demonstrates that the proposed method can avoid conflicts in route plans adjustment, and the control rules are simple, effective and suitable for real-time control.
Keywords :
Petri nets; aerospace safety; aircraft landing guidance; airports; path planning; vehicle routing; A-SMGCS aircraft; access priority; advanced surface movement guidance and control system; aircraft taxiing route; airport road section; airport surface; circular wait conflicts; colored taxiway-oriented Petri net model; conflict-free taxiing route planning; control rules; delayed aircrafts; head-on conflicts; planned time windows; priority change strategy; real-time adjustment strategy; real-time control; route plans adjustment; sufficient condition; Aircraft; Airports; Atmospheric modeling; Delays; Integrated circuit modeling; Real-time systems; Roads; A-SMGCS; Colored Petri Net; Conflict-free Route; Priority Adjustment; Real-time Route Adjustment;
Conference_Titel :
Mechatronics and Automation (ICMA), 2015 IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-7097-1
DOI :
10.1109/ICMA.2015.7237610