IP Library › Granted Patent US 11,420,643
Granted Patent B2
US 11,420,643 · App. 16/488,705 · Granted Aug 23, 2022

Device and method for calibrating vehicle assistance systems

Inventor: Buelent Barcin (Jesingen, DE)
Assignee: Robert Bosch GmbH
B60W50/045G06T7/70B60W2050/0083B60W2420/42G06T2207/30252
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Quick Facts
Patent No.
US 11,420,643
App. No.
16/488,705
Granted
Aug 23, 2022
Kind
B2
Abstract

A calibrating device for calibrating vehicle assistance systems is described. The device includes: at least one target pattern; at least one sensor, which is designed to detect the position and the orientation of a vehicle to be measured with respect to the calibrating device; and a positioning device, which is designed to position the at least one target pattern on the basis of the position of the vehicle to be measured, which is detected by the at least one sensor, in such a way that the at least one target pattern is situated in a specified orientation at a specified position with respect to the vehicle to be measured.

Claims (32)

1. A calibrating device for calibrating a vehicle assistance system, comprising:

at least one target pattern;

at least one sensor to detect a position and orientation of a vehicle to be measured with respect to the calibrating device;

a positioning device positioning the at least one target pattern based on the position of the vehicle to be measured, which is detected by the at least one sensor, so that the at least one target pattern is situated with respect to the vehicle to be measured in a specified orientation at a specified position; and

at least one electronic display device to display the at least one target pattern optically;

wherein based on data supplied by the at least one sensor, the positioning device determines a position, a size and an alignment of the at least one target pattern on the display device, and wherein the positioning device controls the display device so that that the display device displays the at least one target pattern in the determined alignment and size at the determined position,

wherein the at least one target pattern includes a dynamic target pattern for the vehicle, the dynamic pattern being a tracking sequence,

wherein calibrating panels have variable image display devices to represent static target patterns and dynamic target patterns for the vehicle, and

wherein the positioning device is configured to vary the size, the orientation and the position of the target pattern on at least one electronic display device as a function of the position and the alignment of the vehicle on the measuring station, so as to display the at least one target pattern in a required size, alignment and orientation without the at least one target pattern or the display device being moved mechanically.

2. The calibrating device as recited in claim 1 , further comprising:

at least one moving device configured to move the target pattern and/or the calibrating device mechanically to position the target pattern in the specified orientation at the desired position.

3. The calibrating device as recited in claim 2 , wherein the moving device includes at least one wheel and/or at least one roller to move the target pattern and/or the calibrating device mechanically, the at least one wheel and/or the at least one roller being guided in at least one rail.

4. The calibrating device as recited in claim 2 , wherein the moving device is-configured to rotate the at least one target pattern about at least one axis.

5. The calibrating device as recited in claim 1 , wherein the positioning device varies the display of the at least one target pattern on the at least one electronic display device to position the target pattern in the specified orientation at the specified position, the positioning device varying the size and/or the orientation and the position of the target pattern on the at least one electronic display device.

6. The calibrating device as recited in claim 1 , wherein the at least one sensor includes at least one camera to detect optically the vehicle to be measured.

7. A method for calibrating a vehicle assistance system, the method comprising:

(a) positioning a calibrating device in front of a vehicle to be measured, the calibrating device including at least one target pattern, at least one sensor configured to detect a position and orientation of a vehicle to be measured with respect to the calibrating device, and a positioning device to position the at least one target pattern based on the position of the vehicle to be measured, which is detected by the at least one sensor, so that the at least one target pattern is situated with respect to the vehicle to be measured in a specified orientation at a specified position;

(b) determining the position and the orientation of the vehicle with respect to the calibrating device using the at least one sensor; and

(c) positioning, via a positioning device, the at least one target pattern so that it is situated in the specified orientation at the specified position with respect to the vehicle;

wherein the calibration device includes at least one electronic display device to display the at least one target pattern optically, and

wherein based on data supplied by the at least one sensor, the positioning device determines a position, a size and an alignment of the at least one target pattern on the display device, and wherein the positioning device controls the display device so that that the display device displays the at least one target pattern in the determined alignment and size at the determined position,

wherein the at least one target pattern includes a dynamic target pattern for the vehicle, the dynamic pattern being a tracking sequence,

wherein calibrating panels have variable image display devices to represent static target patterns and dynamic target patterns for the vehicle, and

wherein the positioning device is configured to vary the size, the orientation and the position of the target pattern on at least one electronic display device as a function of the position and the alignment of the vehicle on the measuring station, so as to display the at least one target pattern in a required size, alignment and orientation without the at least one target pattern or the display device being moved mechanically.

8. The method as recited in claim 7 , further comprising:

attaching, prior to (b), a marking on the vehicle, the marking being marked on at least one location on a longitudinal driving axis of the vehicle.

9. The method as recited in claim 7 , wherein a beam is mounted so as to be rotatable about an axis, which is oriented orthogonally with respect to a plane of a measuring station, wherein by swiveling about the axis, the beam is oriented so that it is at a right angle with respect to a longitudinal driving axis of the vehicle.

10. The method as recited in claim 9 , wherein the positioning device is configured to swivel the beam and the at least one sensor, which detects the position and an alignment of the vehicle with respect to the calibrating device.

11. The method as recited in claim 7 , wherein the positioning device takes into account and compensates for elevation variations, at least one calibrating panel for facing the vehicle, and which is attached to a beam that extends horizontally and orthogonally with respect to a longitudinal driving axis of the vehicle, and wherein at least one target pattern are put on the at least one calibrating panel.

12. The calibrating device as recited in claim 1 , wherein a beam is mounted so as to be rotatable about an axis, which is oriented orthogonally with respect to a plane of a measuring station, wherein by swiveling about the axis, the beam is oriented so that it is at a right angle with respect to a longitudinal driving axis of the vehicle.

13. The calibrating device as recited in claim 11 , wherein the positioning device is configured to swivel the beam and the at least one sensor, which detects the position and an alignment of the vehicle with respect to the calibrating device.

14. The calibrating device as recited in claim 1 , wherein the positioning device takes into account and compensates for elevation variations, at least one calibrating panel for facing the vehicle, and which is attached to a beam that extends horizontally and orthogonally with respect to a longitudinal driving axis of the vehicle, and wherein at least one target pattern are put on the at least one calibrating panel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2019
From: BARCIN, BUELENT
To: ROBERT BOSCH GMBH
Reel/Frame 050867/0630 →
Priority Claims (1)
DE 102017203155.7 · Feb 27, 2017 · national
Continuity (1)
Related Publication 20210197841A1 · Jul 1, 2021
Cited By (1)
US 12,227,150