• DocumentCode
    3680511
  • Title

    Navigation systems with 3D maps for mobile tablets

  • Author

    Tatsuo Minohara

  • Author_Institution
    Faculty of Policy Informatics, Chiba University of Commerce, Japan
  • fYear
    2015
  • Abstract
    The legacy civil helicopters and airplanes require the advanced navigation systems with several prospects of the current maneuver and the course. By using the mobile tables, the pilots could be supported for navigation without replacing the built-in navigation systems. Combining the navigation system for helicopters and for airplanes with map is also required the nowadays usage of the UAV or the quad-copter with camera. The sizes of flight systems used for various usual purposes become small, otherwise the sizes of airplanes for transportation are still big. However, the small flight planes frequently disturb the flight paths of big airplanes. The controllers who remotely control the quad-copter for filming could be aware of the flight paths for transportations by using proposed systems. They could avoid their quad-copters from the paths at filming by indicating the flight paths into the maps of their navigation systems. Especially, in the controls of the UAV and the quad-copter, the awareness of the attitudes and of the situation of a plane with relation to its target are necessary. The map should be projected in the navigation system similar to the shooting game. This paper proposes the navigation systems combined with 3D maps and prospected trajectories. The proposing system is usable for various sizes of flight planes from the small unmanned flight planes to the civil helicopters and airplanes.
  • Keywords
    "Three-dimensional displays","Vehicles","Trajectory","Aircraft navigation","Buildings","Cities and towns","Airplanes"
  • Publisher
    ieee
  • Conference_Titel
    Digital Avionics Systems Conference (DASC), 2015 IEEE/AIAA 34th
  • ISSN
    2155-7195
  • Electronic_ISBN
    2155-7209
  • Type

    conf

  • DOI
    10.1109/DASC.2015.7311359
  • Filename
    7311359