• DocumentCode
    2900035
  • Title

    Flight deck weather avoidance decision support: Implementation and evaluation

  • Author

    Shu-Chieh Wu ; Luna, Ryan ; Johnson, Walter W.

  • Author_Institution
    San Jose State Univ., San Jose, CA, USA
  • fYear
    2013
  • fDate
    5-10 Oct. 2013
  • Abstract
    Weather related disruptions account for seventy percent of the delays in the National Airspace System (NAS). A key component in the weather plan of the Next Generation of Air Transportation System (NextGen) is to assimilate observed weather information and probabilistic forecasts into the decision process of flight crews and air traffic controllers. In this research we explore supporting flight crew weather decision making through the development of a flight deck predicted weather display system that utilizes weather predictions generated by ground-based radar. This system integrates and presents this weather information, together with in-flight trajectory modification tools, within a cockpit display of traffic information (CDTI) prototype. that the CDTI features 2D and perspective 3D visualization models of weather. The weather forecast products that we implemented were the Corridor Integrated Weather System (CIWS) and the Convective Weather Avoidance Model (CWAM), both developed by MIT Lincoln Lab. We evaluated the use of CIWS and CWAM for flight deck weather avoidance in two part-task experiments. Experiment 1 compared pilots´ en route weather avoidance performance in four weather information conditions that differed in the type and amount of predicted forecast (CIWS current weather only, CIWS current and historical weather, CIWS current and forecast weather, CIWS current and forecast weather and CWAM predictions). Experiment 2 compared the use of perspective 3D and 2½D presentations of weather for flight deck weather avoidance. Results showed that pilots could take advantage of longer range predicted weather forecasts in performing en route weather avoidance but more research will be needed to determine what combinations of information are optimal and how best to present them.
  • Keywords
    air traffic control; airborne radar; environmental factors; meteorological radar; probability; 3D visualization models; CDTI prototype; CIWS; CWAM; NAS; NextGen; air traffic controllers; cockpit display of traffic information; convective weather avoidance model; corridor integrated weather system; en route weather avoidance; flight crew weather decision making; flight deck weather avoidance; flight deck weather avoidance decision support; ground-based radar; historical weather; in-flight trajectory modification tools; national airspace system; next generation of air transportation system; probabilistic forecasts; weather display system; weather forecast products; weather information; weather predictions; Accuracy; Decision making; Hazards; Three-dimensional displays; Trajectory; Weather forecasting;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Digital Avionics Systems Conference (DASC), 2013 IEEE/AIAA 32nd
  • Conference_Location
    East Syracuse, NY
  • ISSN
    2155-7195
  • Print_ISBN
    978-1-4799-1536-1
  • Type

    conf

  • DOI
    10.1109/DASC.2013.6712594
  • Filename
    6712594