EP0802516B1

Map display device, navigation device and map display method

Abstract

This record has no abstract on file.

EP0802516B1, drawing sheet 1
Sheet 1 of 58

Term

Term ended

Expired 15 April 2017, 9.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

10 claims: 5 independent, 5 dependent

  1. 1
    A map display device for displaying a three-dimensional map on a display frame, comprising:a map storage unit (3) for storing three-dimensional data of plural map constituents which constitute the three-dimensional map;a map constituent specifying unit for specifying a desired map constituent which a driver desires to be displayed on the display frame;a vehicle position detecting unit (1, 6, 7, 8, 9) for detecting a position of a vehicle in which the navigation device is to be installed;a viewpoint determining unit (1) for determining a viewpoint on the basis of the position of the vehicle detected by the vehicle position detecting unit;and a map display unit (1, 2)for projecting each map constituent specified by the three-dimensional data stored in said map storage unit onto a plan from the viewpoint determined by the viewpoint determining unit, to form a three-dimensional bird's-eye view map, and displaying the three-dimensional bird's-eye view map on the display frame, wherein said map display unit includes: a hiding determining means for determining whether, in three-dimensional space, the desired map constituent specified by the map constituent specifying unit is hidden by a map constituent located nearer the viewpoint than the desired map constituent, so that there is no direct line of sight between the viewpoint and the desired map constituent and thus, the desired map constituent is not normally displayed on the three-dimensional bird's-eye view map;and a projection mode changing means for automatically changing a projection mode of the desired map constituent or the map constituent located nearer the viewpoint, so that the desired map constituent is displayed on the display frame even though the desired map constituent is not in a direct line of sight from the viewpoint, wherein the projection mode is automatically changed only if the hiding determining means determines that the desired map constituent is hidden by the map constituent located nearer the viewpoint.
  2. 4
    The map display device as claimed in one of claims 1 to 3, wherein said projection mode changing means performs α-blending processing between the desired map constituent and the map constituent located nearer the viewpoint to display the desired map constituent, where the map constituent located nearer the viewpoint is seen through, when the hiding determining means determines that the desired map constituent is hidden by the map constituent located nearer the viewpoint and thus the desired map constituent is not displayed on the three-dimensional bird's-eye view map.
  3. 5
    The map display device as claimed in one of claims 1 to 3, wherein said projection mode changing means changes the projection mode of the desired map constituent, so that the desired map constituent is displayed in front of the map constituent located nearer the viewpoint when the hiding determining means determines that the desired map constituent is hidden by the map constituent located nearer the viewpoint and thus the desired map constituent is not displayed on the three-dimensional bird's-eye view map.
  4. 7
    The map display device as claimed in one of claims 1 to 3, wherein said projection mode changing means changes the projection mode of the map constituent behind which the desired map constituent is hidden, so that said map constituent is not projected onto the plan, when the hiding determining means determines that the desired map constituent is hidden behind said map constituent and thus the desired map constituent is not displayed on the three-dimensional bird's-eye view map.
  5. 10
    A map display method for displaying a three-dimensional map on a display frame, comprising the steps of:specifying a desired map constituent which a driver desires to be displayed on the display frame;detecting a position of a vehicle;determining a viewpoint on the basis of the detected position of the vehicle;forming a three-dimensional map in which map constituents are arranged on a three-dimensional coordinate system, on the basis of the detected position of the vehicle and three-dimensional data of plural map constituents stored in storing unit;projecting the map constituents arranged on the three-dimensional coordinate system onto a plan from the determined viewpoint to form a three-dimensional bird's-eye view map;displaying the three-dimensional bird's-eye view map on the display frame;determining whether, in three-dimensional space the desired map constituent is hidden by a map constituent located nearer the viewpoint than the desired map constituent, such that there is no direct line of sight between the viewpoint and the desired map constituent, and automatically changing a projection mode of the desired map constituent or of the map constituent behind which the desired map constituent is hidden, so that the desired map constituent is displayed on the display frame even though there is no direct line of sight from the viewpoint to the desired map constituent, wherein the projection mode is automatically changed only if the hiding determining means determines that the desired map constituent is hidden by the map constituent located nearer the viewpoint.