IP Library Granted Patent US 9,290,178
Granted Patent B2
US 9,290,178 · App. 14/228,442 · Granted Mar 22, 2016

Driving support system

Inventors: Taku Sakima (Chiryu, JP); Akira Isogai (Kuwana, JP)
Assignee: DENSO CORPORATION
B60W30/09G08G1/165G08G1/166
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Quick Facts
Patent No.
US 9,290,178
App. No.
14/228,442
Granted
Mar 22, 2016
Kind
B2
Abstract

A driving support system detects a target area ahead of the vehicle, a position or a moving direction, etc. of an object such as a pedestrian or another vehicle by using a camera or radar, as well as determines a probability of collision between the own vehicle and the object based on the position, etc. of the object, and performs a driving support for avoiding the collision when the probability of the collision is high. Further, a sensitivity of determination is set high when the object remains in the target area, or when the object is moving towards the target area, while the sensitivity is set low when the object is not present in the target area, or the object is moving away from the target area.

Claims (38)

1. A driving support system comprising:

an object detecting unit for detecting a position of an object existing around an own vehicle;

a determining unit for determining whether or not a probability that the own vehicle will collide with one or more objects is equal to or more than a certain level based on the position of the object;

a starting unit for starting a driving support for avoiding collision when an affirmative determination is made by the determining unit;

an area detecting unit for detecting a target area on which the own vehicle is expected to travel; and

an adjusting unit for adjusting a sensitivity of a determination of a collision probability based on a positional relationship between the object and the target area wherein

the object detecting unit further detects a moving direction of the object;

the adjusting unit adjusts the sensitivity by further considering the moving direction of the object;

the adjusting unit determines whether an object existing outside the target area is moving towards the target area or not based on the positional relationship between the object and the target area and the moving direction of the object;

the sensitivity is enhanced when an affirmative determination is obtained.

2. The driving support system according to claim 1 , wherein,

the adjusting unit determines whether an object existing outside the target area is moving away from the target area or not based on the positional relationship between the object and the target area and the moving direction of the object; and

the sensitivity is reduced when an affirmative determination is obtained.

3. The driving support system according to claim 1 , wherein,

the adjusting unit determines whether an object existing outside the target area is moving away from the target area or not based on the positional relationship between the object and the target area and the moving direction of the object; and

the sensitivity is reduced when an affirmative determination is obtained.

4. A driving support system comprising:

an object detecting unit for detecting a position of an object existing around an own vehicle;

a determining unit for determining whether or not a probability that the own vehicle will collide with one or more objects is equal to or more than a certain level based on the position of the object;

a starting unit for starting a driving support for avoiding collision when an affirmative determination is made by the determining unit;

an area detecting unit for detecting a target area on which the own vehicle is expected to travel; and

an adjusting unit for adjusting a sensitivity of a determination of a collision probability based on a positional relationship between the object and the target area; wherein

the adjusting unit determines whether an object existing outside the target area is moving towards the target area or not based on the positional relationship between the object and the target area and the moving direction of the object; and

the sensitivity is enhanced when an affirmative determination is obtained

the adjusting unit determines whether an object existing outside the target area is moving away from the target area or not based on the positional relationship between the object and the target area and the moving direction of the object; and

the sensitivity is reduced when an affirmative determination is obtained.

5. A driving support system comprising:

an object detecting unit for detecting a position of an object existing around an own vehicle;

a determining unit for determining whether or not a probability that the own vehicle will collide with one or more objects is equal to or more than a certain level based on the position of the object;

a starting unit for starting a driving support for avoiding collision when an affirmative determination is made by the determining unit;

an area detecting unit for detecting a target area on which the own vehicle is expected to travel; and

an adjusting unit for adjusting a sensitivity of a determination of a collision probability based on a positional relationship between the object and the target area;

wherein,

the target area is defined as an area of an own lane where the own vehicle is traveling;

the determining unit further determines that the object exists in the own lane when an existence probability of the object within the own lane reaches a predetermined threshold;

the determining unit further determines that the collision probability reaches the certain level when the object exists in the own lane earlier compared with a case where the object does not exist in the own lane;

the sensitivity is defined as the threshold; and

the adjusting unit enhances the sensitivity by setting the threshold small and reduces the sensitivity by setting the threshold large.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2014
From: SAKIMA, TAKU; ISOGAI, AKIRA
To: DENSO CORPORATION
Reel/Frame 032779/0054 →
Priority Claims (1)
JP 2013-072800 · Mar 29, 2013 · national
Continuity (1)
Related Publication 20140292502A1 · Oct 2, 2014