• DocumentCode
    2566776
  • Title

    Trajectory-Based Complexity (TBX): A modified aircraft count to predict sector complexity during trajectory-based operations

  • Author

    Prevot, Thomas ; Lee, Paul U.

  • Author_Institution
    NASA Ames Res. Center, Moffett Field, CA, USA
  • fYear
    2011
  • fDate
    16-20 Oct. 2011
  • Abstract
    In this paper we introduce a new complexity metric to predict -in real-time- sector complexity for trajectory-based operations (TBO). TBO will be implemented in the Next Generation Air Transportation System (NextGen). Trajectory-Based Complexity (TBX) is a modified aircraft count that can easily be computed and communicated in a TBO environment based upon predictions of aircraft and weather trajectories. TBX is scaled to aircraft count and represents an alternate and additional means to manage air traffic demand and capacity with more consideration of dynamic factors such as weather, aircraft equipage or predicted separation violations, as well as static factors such as sector size. We have developed and evaluated TBX in the Airspace Operations Laboratory (AOL) at the NASA Ames Research Center during human-in-the-loop studies of trajectory-based concepts since 2009. In this paper we will describe the TBX computation in detail and present the underlying algorithm. Next, we will describe the specific TBX used in an experiment at NASA´s AOL. We will evaluate the performance of this metric using data collected during a controller-in- the-loop study on trajectory-based operations at different equipage levels. In this study controllers were prompted at regular intervals to rate their current workload on a numeric scale. When comparing this real-time workload rating to the TBX values predicted for these time periods we demonstrate that TBX is a better predictor of workload than aircraft count. Furthermore we demonstrate that TBX is well suited to be used for complexity management in TBO and can easily be adjusted to future operational concepts.
  • Keywords
    air traffic control; trajectory control; AOL; Airspace Operations Laboratory; NASA Ames Research Center; NextGen air transportation system; TBO; TBX computation; air traffic demand; air traffic management; aircraft count; aircraft equipage; aircraft trajectories; controller-in-the-loop study; next generation air transportation system; real-time sector complexity prediction; trajectory-based complexity; trajectory-based operations; weather trajectories; Air traffic control; Aircraft; Complexity theory; Measurement; Meteorology; Real time systems;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Digital Avionics Systems Conference (DASC), 2011 IEEE/AIAA 30th
  • Conference_Location
    Seattle, WA
  • ISSN
    2155-7195
  • Print_ISBN
    978-1-61284-797-9
  • Type

    conf

  • DOI
    10.1109/DASC.2011.6096045
  • Filename
    6096045