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Flight-Deck Strategies and Outcomes When Flying Schedule-Matching Descents
Author(s) -
John Kaneshige,
Shivanjli Sharma,
Lynne Martin,
Sandra Lozito,
Victoria Dulchinos
Publication year - 2013
Publication title -
aiaa guidance, navigation, and control (gnc) conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2013-4537
Subject(s) - cockpit , schedule , matching (statistics) , aeronautics , deck , computer science , operations research , engineering , mathematics , statistics , operating system , structural engineering
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. An exploratory study was undertaken to investigate the impacts that such tools (and concepts) could have on the flight-deck. Ten Boeing 747-400 crews flew eight optimized profile descents in the Los Angeles terminal airspace, while receiving scripted current day and futuristic speed clearances, to ascertain their ability to fly schedulematching descents without prior training. Although the study was exploratory in nature, four variables were manipulated: route constraints, winds, speed changes, and clearance phraseology. Despite flying the same scenarios with the same events and timing, there were significant differences 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 focus of this paper is the examination of the crews' aircraft management strategies and outcomes. This includes potentially problematic human-automation interaction issues that may negatively impact arrival times, speed and altitude constraint compliance, and energy management efficiency.

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