DocumentCode
2533709
Title
Flying schedule-matching descents to explore flight crews´ perceptions of their load and task feasibility
Author
Martin, Larry K. ; Sharma, Shantanu ; Lozito, S. ; Kaneshige, J. ; Hayashi, Mariko ; Dulchinos, V.
Author_Institution
San Jose State Univ. at NASA ARC, Mountain View, CA, USA
fYear
2012
fDate
14-18 Oct. 2012
Abstract
Recent studies at NASA Ames Research Center have investigated the development and use of ground-based (air traffic controller) tools to manage and schedule air traffic in future terminal airspace. No complementary studies have investigated the impacts that such tools (and concepts) could have on the flight-deck (although some independent studies have researched impacts of other ground tools). To begin to redress the balance within the project, an exploratory study investigated the procedures and actions of ten Boeing-747-400 crews as they flew eight continuous descent approaches in the Los Angeles terminal airspace, with the descents being controlled using speed alone. Although the study was exploratory in nature, four variables were manipulated: speed changes, route constraints, clearance phraseology, and winds. Despite flying the same scenarios with the same events and timing, there was at least a 50 second difference in the time it took crews to fly the approaches. This variation is the product of a number of factors but highlights potential difficulties for scheduling tools that would have to accommodate this amount of natural variation in descent times. The primary focus of this paper is the potential impact of ground scheduling tools on the flight crews´ performance and procedures. Crews reported “moderate to low” workload, on average; however, short periods of intense and high workload were observed. The non-flying pilot often reported a higher level of workload than the flying-pilot, which may be due to their increased interaction with the Flight Management Computer, when using the aircraft automation to assist with managing the descent clearances. It is concluded that ground-side tools and automation may have a larger impact on the current-day flight-deck than was assumed and that studies investigating this impact should continue in parallel with controller support tool development.
Keywords
aerospace computing; air traffic control; decision support systems; human factors; Boeing-747-400 flight crew; Los Angeles terminal airspace; NASA Ames Research Center; air traffic controller; air traffic scheduling; aircraft automation; clearance phraseology; controller support tool; explore flight crew perceptions; flight deck; flying schedule-matching descents; ground based tools; route constraints; scheduling tools; speed changes; wind variable; Air traffic control; Aircraft; Automation; NASA; Schedules; Wind forecasting;
fLanguage
English
Publisher
ieee
Conference_Titel
Digital Avionics Systems Conference (DASC), 2012 IEEE/AIAA 31st
Conference_Location
Williamsburg, VA
ISSN
2155-7195
Print_ISBN
978-1-4673-1699-6
Type
conf
DOI
10.1109/DASC.2012.6382286
Filename
6382286
Link To Document