IP Library Granted Patent US 10,589,713
Granted Patent B2
US 10,589,713 · App. 15/380,639 · Granted Mar 17, 2020

Determining an occupancy status of a vehicle seat

Inventors: Colm Boran (Novi, MI); Mark Crawford (Belleville, MI); Douglas Scott Rhode (Ypsilanti, MI)
Assignee: FORD GLOBAL TECHNOLOGIES, LLC
B60R22/48B60R21/0155B60R21/01544B60W40/08B60W50/14B60R2022/4808B60R2022/4816B60R2022/4825B60R2022/4841B60R2022/4858B60W2040/0881B60W2050/0095B60W2550/402
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Quick Facts
Patent No.
US 10,589,713
App. No.
15/380,639
Granted
Mar 17, 2020
Kind
B2
Abstract

A computer that may be programmed to: in response to receiving an indication that a vehicle is approaching a geofence boundary, retract slack in a webbing associated with a seat in the vehicle by actuating a seatbelt retractor; then receive measurement data from one or more sensors associated with the seat; using the data, determine whether an occupant occupies the seat; and when no occupant occupies the seat, then transmit an instruction to stop the vehicle.

Claims (24)

1. A computer, comprising: a processor and memory storing instructions, the instructions comprising, to:

operate a vehicle in a geofence region in a fully autonomous mode, wherein the geofence region is within a geofence boundary that defines a periphery of the geofence region;

determine that the vehicle is approaching the geofence boundary; and

based on determining that the vehicle is approaching the geofence boundary, determine whether attempt to hand-off control to a driver of the vehicle or to stop the vehicle by:

determining whether the driver occupies a driver's seat of the vehicle by:

retracting slack in a webbing associated with the driver's seat by actuating a seatbelt retractor, and

using data from a seatbelt payout sensor and a seat position sensor, determining a length (L USED ) of the webbing extended from the retractor; and

when the driver is determined to occupy the driver's seat, then attempting to hand-off control of the vehicle to the driver; and

when the driver is determined to not occupy the driver's seat, then transmit an instruction to stop the vehicle.

2. The computer of claim 1 , wherein the instructions further comprise to: determine whether the driver occupies the driver's seat using data from a seatbelt buckle sensor.

3. The computer of claim 2 , wherein the instructions further comprise to: determine whether the driver occupies the driver's seat by: determining that the buckle sensor indicates a latched state; using the payout sensor, determining a length L EXTENDED of the webbing extended from the retractor; and determining the length L USED by subtracting a length L EMPTY, POSITION from the length L EXTENDED , wherein the length L EMPTY, POSITION corresponds to a position of the driver's seat relative to a body of the vehicle, wherein the instructions further comprise to determine that the driver's seat is unoccupied when the length L USED is less than a predetermined threshold.

4. The computer of claim 1 , wherein the instructions further comprise to: determine whether the driver occupies the driver's seat in response to a trigger from another vehicle computer.

5. The computer of claim 1 , wherein attempting to hand-off vehicle control to the driver is further based on a characteristic of the driver, wherein the characteristic includes at least one of an alertness level of the driver, an age of the driver, or a sobriety of the driver.

6. A method, comprising:

operating a vehicle in a geofence region in a fully autonomous mode, wherein the geofence region is within a geofence boundary that defines a periphery of the geofence region;

determining that the vehicle is approaching a geofence boundary; and

based on determining that the vehicle is approaching the geofence boundary, determining to either to hand-off control of the vehicle to a driver of the vehicle or to stop the vehicle, wherein determining whether to hand-off control or to stop the vehicle comprises:

determining whether the driver occupies a driver's seat of the vehicle by:

retracting slack in a webbing associated with the driver's seat by actuating a seatbelt retractor; and then

using data from a seatbelt payout sensor and a seat position sensor, determining a length (L USED ) of the webbing extended from the retractor.

7. The method of claim 6 , wherein the determining further comprises using data from a seatbelt buckle sensor.

8. The method of claim 7 , wherein determining whether the driver occupies the driver's seat further comprises: determining that the buckle sensor indicates a latched state; using the payout sensor, determining a length L EXTENDED of the webbing extended from the retractor; determining the length L USED by subtracting a length L EMPTY, POSITION from the length L EXTENDED , wherein the length L EMPTY, POSITION corresponds to a position of the driver's seat relative to a body of the vehicle; and determining that no driver occupies the driver's seat when the length L USED is less than a predetermined threshold.

9. The method of claim 6 , further comprising: determining that the driver occupies the driver's seat; and then attempting to hand-off control of the vehicle to the driver.

10. The method of claim 6 , further comprising: determining that the driver does not occupy the driver's seat; and then transmitting an instruction to stop the vehicle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2016
From: BORAN, COLM; CRAWFORD, MARK; RHODE, DOUGLAS SCOTT
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 040637/0090 →
Continuity (1)
Related Publication 20180170307A1 · Jun 21, 2018
Cited By (1)
US 12,249,083