IP Library Granted Patent US 11,429,185
Granted Patent B2
US 11,429,185 · App. 16/576,059 · Granted Aug 30, 2022

Apparatus and method for assessing occupant gazes

Inventors: Donald K. Grimm (Utica, MI); Beñat Irastorza-Ugalde (Ordizia, ES); Guillaume Trehard (Oberschleißheim, DE)
Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
G06F3/013B60W30/18B60W50/14G06T7/60G06T7/73B60W2050/0072G05D1/0088G06T2207/30201G06T2207/30252G06T2207/30268
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Quick Facts
Patent No.
US 11,429,185
App. No.
16/576,059
Granted
Aug 30, 2022
Kind
B2
Abstract

A method of assessing a gaze of an occupant is provided. The method includes: determining a direction of a gaze of an occupant based on gaze information detected by a first sensor; determining a position of a feature of road based on one or more from among mapping information or vehicle environment information provided by a second sensor; comparing the direction of the gaze to the position of the feature of the road; and performing a corrective action in response to determining that the direction of the gaze does not correspond to the position of the feature of the road.

Claims (21)

1. A method of assessing a gaze of an occupant, the method comprising:

determining a direction of a gaze of an occupant of an autonomous or semi- autonomous vehicle based on gaze information detected by a first sensor;

determining curvature changes or elevation changes of a road based on vehicle environment information provided by a second sensor comprising one or more from among a camera, a radar, an ultrasonic sensor, a LIDAR, a laser, and an infrared sensor;

assessing whether the direction of the gaze is a) away from the road or straight ahead, or b) in the direction of the curvature change or elevation change, the assessing comprising identifying curve segment parameters or elevation change segment parameters of the road, synchronizing the curve segment parameters or elevation change segment parameters with the gaze, and comparing the direction of the gaze to the synchronized curve segment parameters or elevation change segment parameters at a plurality of points in time; and

performing a corrective action in response to determining that the direction of the gaze does not correspond to the direction of the curvature change or elevation change, wherein the performing the corrective action comprises one or more from among disengaging automated vehicle driving controls and stopping the autonomous or semi-autonomous vehicle.

2. The method of claim 1 , wherein the curve segment parameters or the elevation change segment parameters are identified from the vehicle environment information provided by the second sensor, and

wherein the assessing is performed after a curve segment or an elevation change segment is traversed.

3. The method of claim 1 , wherein the performing the corrective action further comprises one or more from among providing a warning to the occupant to keep eyes on the road, and notifying the occupant to take over steering of the autonomous or semi-autonomous vehicle.

4. The method of claim 1 , further comprising determining a position of a traffic control object or device based on the vehicle environment information provided by the second sensor and projecting the direction of the gaze to a first position on an image plane and projecting the position of the traffic control object or device to a second position on the image plane and determining whether the first position is within a predetermined distance of the second position.

5. The method of claim 1 , further comprising determining a position of a traffic control object or device based on the vehicle environment information provided by the second sensor and comparing information on a normalized vector between an eye direction and an eye position to an expected gaze direction for the traffic control object or device.

6. An apparatus that assesses a gaze of an occupant, the apparatus comprising:

at least one memory comprising computer executable instructions; and

at least one processor configured to read and execute the computer executable instructions, the computer executable instructions causing the at least one processor to:

determine a direction of a gaze of an occupant of an autonomous or semi- autonomous vehicle based on gaze information detected by a first sensor;

determine curvature changes or elevation changes of a road based on vehicle environment information provided by a second sensor comprising one or more from among a camera, a radar, an ultrasonic sensor, a LIDAR, a laser, and an infrared sensor;

assess whether the direction of the gaze is a) away from the road or straight ahead, or b) in the direction of the curvature change or elevation change, the assessing comprising identifying curve segment parameters or elevation change segment parameters of the road, synchronizing the curve segment parameters or elevation change segment parameters with the gaze, and comparing the direction of the gaze to the synchronized curve segment parameters or elevation change segment parameters at a plurality of points in time; and

perform a corrective action in response to determining that the direction of the gaze does not correspond to the direction of the curvature change or elevation change, wherein the performing the corrective action comprises one or more from among disengaging automated vehicle driving controls and stopping the autonomous or semi-autonomous vehicle.

7. The apparatus of claim 6 , wherein the curve segment parameters or the elevation change segment parameters are identified from the vehicle environment information provided by the sensor, and

wherein the assessing is performed after a curve segment or an elevation change segment is traversed.

8. The apparatus of claim 6 , wherein the performing the corrective action further comprises performing one or more from among providing a warning to the occupant to keep eyes on the road, and notifying the occupant to take over steering of the autonomous or semi-autonomous vehicle.

9. The apparatus of claim 6 , wherein the computer executable instructions further cause the at least one processor to determine a position of a traffic control object or device based on the vehicle environment information provided by the second sensor and project the direction of the gaze to a first position on an image plane and projecting the position of the traffic control object or device to a second position on the image plane and determining whether the first position is within a predetermined distance of the second position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2019
From: GRIMM, DONALD K.; IRASTORZA-UGALDE, BENAT; TREHARD, GUILLAUME
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 050788/0037 →
Continuity (1)
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