IP Library › Granted Patent US 11,933,633
Granted Patent B2
US 11,933,633 · App. 17/431,710 · Granted Mar 19, 2024

Point cloud data acquiring method and point cloud data acquiring system

Inventors: Michiharu Yamamoto (Tokai, JP); Hitoshi Aoyama (Tokai, JP)
Assignee: AICHI STEEL CORPORATION
G01C7/04G08G1/042
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Quick Facts
Patent No.
US 11,933,633
App. No.
17/431,710
Granted
Mar 19, 2024
Kind
B2
Abstract

A point cloud data acquiring system ( 1 ) is a system which acquires, as moving, point cloud data which serves as base data for a three-dimensional map representing a traveling environment of a vehicle includes range finding part ( 31 ) which acquires point cloud data representing azimuths and distances to planimetric features configuring the traveling environment, marker detecting part ( 2 ) which detects marker ( 10 ) laid in or on a traveling road of the vehicle, and a data recording part which records point cloud data acquired by range finding part ( 31 ) as linking thereto marker reference information including positional information with reference to any marker ( 10 ).

Claims (40)

1. A point cloud data acquiring method, comprising:

measuring, using a ranging sensor, a plurality of azimuths and distances from the ranging sensor to a plurality of planimetric features configuring a traveling environment of a vehicle of the point cloud data acquiring system, and acquiring point cloud data representing the plurality of azimuths and distances;

detecting, using a magnetic sensor, a plurality of magnetic markers laid in or on a traveling road of the vehicle, each of the plurality of magnetic markers being a magnetism generation source;

reading, using an RFID (Radio Frequency IDentification) tag reader, from a plurality of RFID tags, unique information of each of the plurality of magnetic markers, each of the plurality of RFID tags being attached to each of the plurality of magnetic markers, each of the plurality of RFID tags being configured to provide the unique information of a magnetic marker of the plurality of magnetic markers to which the RFID tag is attached; and

recording, using processing circuitry, in a memory, the point cloud data by linking each data representing azimuth and distance of the plurality of azimuths and distances with (1) marker reference information including the unique information of each of the plurality of magnetic markers, and (2) relative position information representing a relative position of the vehicle with reference to each of the plurality of magnetic markers.

2. The point cloud data acquiring method in claim 1 , further comprising:

estimating a reference azimuth of the point cloud data by utilizing at least two of the plurality of magnetic markers, wherein

the marker reference information includes information representing the reference azimuth estimated in the estimating.

3. A point cloud data acquiring system, comprising:

a ranging sensor configured to measure a plurality of azimuths and distances from the ranging sensor to a plurality of planimetric features configuring a traveling environment of a vehicle of the point cloud data acquiring system, and acquire point cloud data representing the plurality of azimuths and distances;

a plurality of magnetic markers laid in a traveling road of the vehicle, each of the plurality of magnetic markers being a magnetism generation source;

a magnetic sensor configured to detect the plurality of magnetic markers;

a plurality of RFID (Radio Frequency IDentification) tags, each of the plurality of RFID tags being attached to each of the plurality of magnetic markers, each of the plurality of RFID tags being configured to provide unique information of a magnetic marker of the plurality of magnetic markers to which the RFID tag is attached;

an RFID tag reader configured to read, from the plurality of RFID tags, the unique information of each of the plurality of magnetic markers; and

processing circuitry configured to record, in a memory, the point cloud data by linking each data representing azimuth and distance of the plurality of azimuths and distances with (1) marker reference information including the unique information of any marker and each of the plurality of magnetic markers, and (2) relative position information representing a relative position of the vehicle with reference to each of the plurality of magnetic markers.

4. The point cloud data acquiring system in claim 3 , wherein

the processing circuitry is configured to estimate a reference azimuth of the point cloud data by utilizing at least two of the plurality of magnetic markers, wherein

the marker reference information includes information representing the reference azimuth estimated by the processing circuitry.

5. The point cloud data acquiring method in claim 1 , wherein the unique information is identification information of each of the plurality of magnetic markers.

6. The point cloud data acquiring method in claim 3 , wherein the unique information is identification information of each of the plurality of magnetic markers.

7. The point cloud data acquiring method in claim 2 , wherein the unique information is identification information of each of the plurality of magnetic markers.

8. The point cloud data acquiring system in claim 4 , wherein the unique information is identification information of each of the plurality of magnetic markers.

9. The point cloud data acquiring system in claim 3 , wherein the marker reference information includes a laying position of the plurality of magnetic markers.

10. The point cloud data acquiring system in claim 3 , wherein the marker reference information includes data of a vehicle position of the vehicle identified with reference to one of the plurality of magnetic markers.

11. The point cloud data acquiring system in claim 4 , wherein

the magnetic sensor includes front and rear magnetic sensors,

a pitch between the front and rear magnetic sensors is equal to a pitch between each adjacent magnetic markers of the plurality of magnetic markers, and

the processing circuitry is configured to calculate an azimuth shift angle of the vehicle based on two lateral shift amounts of the vehicle measured by the front and rear magnetic sensors.

12. The point cloud data acquiring system in claim 11 , wherein

the magnetic sensor further includes a center magnetic sensor, and

the processing circuitry is configured to switch whether the center magnetic sensor unit is utilized or not in accordance with a speed of the vehicle.

13. The point cloud data acquiring method in claim 1 , wherein the marker reference information includes a plurality of laying positions of the plurality of magnetic markers.

14. The point cloud data acquiring method in claim 1 , wherein the marker reference information includes data of a vehicle position of the vehicle identified with reference to one of the plurality of magnetic markers.

15. The point cloud data acquiring method in claim 2 , wherein

the magnetic sensor includes front and rear magnetic sensors,

a pitch between the front and rear magnetic sensors is equal to a pitch between each adjacent magnetic markers of the plurality of magnetic markers, and

the method further comprises calculating an azimuth shift angle of the vehicle based on two lateral shift amounts of the vehicle measured by the front and rear magnetic sensors.

16. The point cloud data acquiring method in claim 15 , wherein

the magnetic sensor further includes a center magnetic sensor, and

the method further comprises switching whether the center magnetic sensor unit is utilized or not in accordance with a speed of the vehicle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2021
From: YAMAMOTO, MICHIHARU; AOYAMA, HITOSHI
To: AICHI STEEL CORPORATION
Reel/Frame 057208/0878 →
Priority Claims (1)
JP 2019-034970 · Feb 27, 2019 · national
Continuity (1)
Related Publication 20220011102A1 · Jan 13, 2022