IP Library Granted Patent US 9,649,936
Granted Patent B2
US 9,649,936 · App. 14/829,290 · Granted May 16, 2017

In-vehicle device, control method of in-vehicle device, and computer-readable storage medium

Inventor: Yoshinori Yamada (Toyota, JP)
Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
B60K37/04B60W30/16B60W50/14G01C21/365G06T19/006G09G5/38B60K2350/2052B60K2350/901B60K2350/905B60K2350/965B60R2300/205B60R2300/308G09G2380/10
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Quick Facts
Patent No.
US 9,649,936
App. No.
14/829,290
Granted
May 16, 2017
Kind
B2
Abstract

An in-vehicle device includes: a drive assist unit configured to perform drive assist processing; a display unit configured to display an image in a display area with the image overlapped on a scene in a real space ahead of a vehicle; and a display control unit configured to control the display unit to display, in a normal state while the drive assist processing is performed, an image of a first marker at a vehicle-corresponding position as a position in the display area corresponding to a position where the vehicle is estimated to be positioned in the real space in a predetermined time. The first marker has a first color, the first marker has a first shape that has a smooth outline and fluctuates, and a display position of the first marker varies periodically from the vehicle-corresponding position.

Claims (42)

1. An in-vehicle device comprising:

a drive assist electronic control unit configured to perform drive assist processing that assists an occupant in driving a vehicle;

a display unit configured to display an image in a display area with the image overlapped on a scene in a real space ahead of the vehicle; and

a display electronic control unit configured to control the display unit to display, in a normal state while the drive assist processing is performed by the drive assist electronic control unit, an image of a first marker at a vehicle-corresponding position as a position in the display area corresponding to a position where the vehicle is estimated to be positioned in the real space in a predetermined time, wherein

the first marker has a first color,

the first marker has a first shape that has a smooth outline and fluctuates, and

a display position of the first marker varies periodically from the vehicle-corresponding position.

2. The in-vehicle device according to claim 1 , wherein:

the display electronic control unit is configured to control the display unit to display an image of a second marker when there is a need to issue an alert to the occupant;

the second marker has a second color that differs from the first color;

the second marker has a second shape that differs from the first shape; and

a display position of the second marker moves from the vehicle-corresponding position to a position in the display area corresponding to a location where an attention of the occupant is required, at a speed higher than a speed at which the display position of the first marker varies.

3. The in-vehicle device according to claim 2 , wherein the second shape has an outline composed of a plurality of acute projections.

4. The in-vehicle device according to claim 2 , wherein:

the display electronic control unit is configured to control the display unit to display an image of a third marker when a failure is occurred in the drive assist electronic control unit or in the drive assist processing performed by the drive assist electronic control unit;

the third marker has a third color that differs from the first color and the second color; and

the third marker has a third shape that differs from the first shape and the second shape and that changes indeterminately.

5. The in-vehicle device according to claim 4 , wherein the display electronic control unit is configured to control the display unit to display a message indicating termination of the drive assist processing and erase the display of the third marker, when a type of the occurred failure is a predetermined type.

6. The in-vehicle device according to claim 4 , wherein the display electronic control unit is configured to control the display unit to display, while the vehicle is traveling, a track mark that indicates a movement track of the third marker.

7. The in-vehicle device according to claim 6 , wherein the display electronic control unit is configured to control the display unit to display, as the track mark, a plurality of marks arranged in such a manner that the marks are continuously flowing from the third marker into an area in the display area corresponding to a road surface in the real space.

8. The in-vehicle device according to claim 2 , wherein the display electronic control unit is configured to control the display unit to display, while the vehicle is traveling, a track mark that indicates a movement track of the second marker.

9. The in-vehicle device according to claim 8 , wherein the display electronic control unit is configured to control the display unit to display, as the track mark, a plurality of marks arranged in such a manner that the marks are continuously flowing from the second marker into an area in the display area corresponding to a road surface in the real space.

10. The in-vehicle device according to claim 1 , wherein the display electronic control unit is configured to control the display unit to display, while the vehicle is traveling, a track mark that indicates a movement track of the first marker.

11. The in-vehicle device according to claim 10 , wherein the display electronic control unit is configured to control the display unit to display, as the track mark, a plurality of marks arranged in such a manner that the marks are continuously flowing from the first marker into an area in the display area corresponding to a road surface in the real space.

12. The in-vehicle device according to claim 1 , wherein the display electronic control unit is configured to control the display unit to display an alert mark that alerts the occupant, when a simple alert is issued to the occupant or a message to the occupant is displayed.

13. The in-vehicle device according to claim 12 , wherein the display electronic control unit is configured to control the display unit to display, as the alert mark, a plurality of marks arranged in such a manner that the marks are scattered from a predetermined position into a surrounding area of the predetermined position.

14. The in-vehicle device according to claim 1 , wherein:

the drive assist electronic control unit is configured to perform, as the drive assist processing, vehicle-following processing in which the vehicle is controlled to follow a specific vehicle that is traveling ahead of the vehicle in the same direction as a direction of the vehicle; and

the display electronic control unit is configured to control the display unit to display, while the vehicle-following processing is performed by the drive assist electronic control unit, a following-target vehicle mark indicating that the specific vehicle is a following target vehicle at a position in the display area corresponding to a position of the specific vehicle in the real space.

15. The in-vehicle device according to claim 1 , wherein the display electronic control unit is configured to control the display unit to display, when the vehicle makes one of a lane change and a right or left turn, a direction mark indicating a direction in which the vehicle is to make the one of the lane change and the right or left turn.

16. The in-vehicle device according to claim 1 , further comprising a surrounding situation acquisition unit configured to acquire a surrounding situation around the vehicle, wherein

the display electronic control unit controls the display unit to display a surrounding situation diagram that indicates the surrounding situation around the vehicle based on the surrounding situation around the vehicle, acquired by the surrounding situation acquisition unit.

17. A control method for an in-vehicle device including a drive assist electronic control unit configured to perform drive assist processing that assists an occupant in driving a vehicle and a display unit configured to display an image in a display area with the image overlapped on a scene in a real space ahead of the vehicle, the control method comprising

controlling the display unit to display, in a normal state while the drive assist processing is performed by the drive assist electronic control unit, an image of a first marker at a vehicle-corresponding position as a position in the display area corresponding to a position where the vehicle is estimated to be positioned in the real space in a predetermined time, wherein

the first marker has a first color,

the first marker has a first shape that has a smooth outline and fluctuates, and

a display position of the first marker varies periodically from the vehicle-corresponding position.

18. A non-transitory computer-readable storage medium that stores computer-executable instructions for performing a control method for an in-vehicle device including a drive assist electronic control unit configured to perform drive assist processing that assists an occupant in driving a vehicle and a display unit configured to display an image in a display area with the image overlapped on a scene in a real space ahead of the vehicle, the control method comprising

controlling the display unit to display, in a normal state while the drive assist processing is performed by the drive assist electronic control unit, an image of a first marker at a vehicle-corresponding position as a position in the display area corresponding to a position where the vehicle is estimated to be positioned in the real space in a predetermined time, wherein

the first marker has a first color,

the first marker has a first shape that has a smooth outline and fluctuates, and

a display position of the first marker varies periodically from the vehicle-corresponding position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2015
From: YAMADA, YOSHINORI
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 036351/0640 →
Priority Claims (1)
JP 2014-169499 · Aug 22, 2014 · national
Continuity (1)
Related Publication 20160052394A1 · Feb 25, 2016