Abstract:
Methods, systems and apparatus are described to provide a three-dimensional transition for a map view change. Various embodiments may display a map view. Embodiments may obtain input selecting another map view for display. Input may be obtained through the utilization of touch, auditory, or other well-known input technologies. In response to the input selecting a map view, embodiments may then display a transition animation that illustrates moving from the displayed map view to the selected map view in virtual space. Embodiments may then display the selected map view.
Abstract:
Methods, systems and apparatus are described to provide visual feedback of a change in map view. Various embodiments may display a map view of a map in a two-dimensional map view mode. Embodiments may obtain input indicating a change to a three-dimensional map view mode. Input may be obtained through the utilization of touch, auditory, or other well- known input technologies. Some embodiments may allow the input to request a specific display position to display. In response to the input indicating a change to a three-dimensional map view mode, embodiments may then display an animation that moves a virtual camera for the map display to different virtual camera positions to illustrate that the map view mode is changed to a three-dimensional map view mode.
Abstract:
The embodiments described relate to techniques and systems for utilizing a portable electronic device to monitor, process, present and manage data captured by a series of sensors and location awareness technologies to provide a context aware map and navigation application. The context aware map application offers a user interface including visual and audio input and output, and provides several map modes that can change based upon context determined by data captured by a series of sensors and location awareness technologies.