IP Library Granted Patent US 10,329,740
Granted Patent B2
US 10,329,740 · App. 15/868,410 · Granted Jun 25, 2019

Earth moving machine, range finder arrangement and method for 3D scanning

Inventors: Visa Hokkanen (Ylöjärvi, FI); Jukka Tervahauta (Tampere, FI); Mikko Vesanen (Ylöjärvi, FI)
Assignee: Novatron Oy
E02F9/264E02F3/842E02F9/26E02F9/261G01S7/2955G01S13/42G01S13/86G01S13/89G01S17/023G01S17/42G01S17/89E02F3/32
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Quick Facts
Patent No.
US 10,329,740
App. No.
15/868,410
Filed
Jan 11, 2018
Granted
Jun 25, 2019
Kind
B2
Art Unit
3661
USPC
701/32.4
Abstract

A mobile earth moving machine includes a carrier, at least one machine element movable relative to the carrier, a positioning system for determining 3D position and orientation data of the earth moving machine, at least one sensing device for determining position and orientation data of the movable machine element, at least one range finder device for detecting at least one object in a field of the range finder device and providing point cloud output of the object, and at least one control unit configured to receive and process the produced data. The range finder device is a solid-state device without internal movable mechanical elements, whereby the device is without internal scanning equipment. The range finder device is arranged on the movable machine element and is configured to be moved together with the movable machine element.

Claims (68)

1. A mobile earth moving machine comprising:

a carrier;

at least one machine element movable relative to the carrier;

a positioning system for determining 3D position and orientation data of the earth moving machine;

at least one sensing device for determining position and orientation data of the movable machine element;

at least one range finder device for detecting at least one object in a field of the range finder device and providing point cloud output of the object; and

at least one control unit configured to receive and process the produced data,

wherein the range finder device is a solid-state device without internal movable mechanical elements, whereby the device is without internal scanning equipment,

the range finder device is arranged on the movable machine element and is configured to be moved together with the movable machine element,

the range finder device is configured to generate the point cloud output based on time-of-flight of signals transmitted by at least one transmitting unit and reflecting signals received by at least one receiving unit comprising at least one detector, and

the control unit is configured to determine position and orientation of the range finder device and to provide the point cloud in response to the input data.

2. The earth moving machine as claimed in claim 1 , wherein

the control unit is configured to determine 3D position and orientation of the range finder device and to provide the point cloud with 3D coordinates in response to the input data.

3. The earth moving machine as claimed in claim 1 , wherein

the receiving unit comprises at least one detector element arranged to form an array of n*m, wherein n and m can be any number.

4. The earth moving machine as claimed in claim 2 , wherein

the receiving unit comprises at least one detector element arranged to form an array of n*m, wherein n and m can be any number.

5. The earth moving machine as claimed in claim 1 , wherein

the at least one machine element is a boom, and

the at least one range finder device is arranged to the boom, whereby the at least one range finder device is moved together with the boom.

6. The earth moving machine as claimed in claim 2 , wherein

the at least one machine element is a boom, and

the at least one range finder device is arranged to the boom, whereby the at least one range finder device is moved together with the boom.

7. The earth moving machine as claimed in claim 3 , wherein

the at least one machine element is a boom, and

the at least one range finder device is arranged to the boom, whereby the at least one range finder device is moved together with the boom.

8. The earth moving machine as claimed in claim 4 , wherein

the at least one machine element is a boom, and

the at least one range finder device is arranged to the boom, whereby the at least one range finder device is moved together with the boom.

9. The earth moving machine as claimed in claim 1 , wherein

the range finder device is a laser range finder device, wherein the transmitting unit comprises at least one laser transmitter.

10. The earth moving machine as claimed in claim 2 , wherein

the range finder device is a laser range finder device, wherein the transmitting unit comprises at least one laser transmitter.

11. The earth moving machine as claimed in claim 3 , wherein

the range finder device is a laser range finder device, wherein the transmitting unit comprises at least one laser transmitter.

12. The earth moving machine as claimed in claim 4 , wherein

the range finder device is a laser range finder device, wherein the transmitting unit comprises at least one laser transmitter.

13. The earth moving machine as claimed in claim 5 , wherein

the range finder device is a laser range finder device, wherein the transmitting unit comprises at least one laser transmitter.

14. The earth moving machine as claimed in claim 6 , wherein

the range finder device is a laser range finder device, wherein the transmitting unit comprises at least one laser transmitter.

15. The earth moving machine as claimed in claim 7 , wherein

the range finder device is a laser range finder device, wherein the transmitting unit comprises at least one laser transmitter.

16. The earth moving machine as claimed in claim 8 , wherein

the range finder device is a laser range finder device, wherein the transmitting unit comprises at least one laser transmitter.

17. The earth moving machine as claimed in claim 1 , wherein

the positioning system for determining 3D position and orientation data of the earth moving machine comprises a satellite-based positioning system.

18. The earth moving machine as claimed in claim 1 , wherein

the at least one sensing device for determining position and orientation of the movable machine element comprises at least one Inertia Measurement Unit for producing data on orientation, and

the control unit is configured to determine orientation of the range finder device in response to the data received from the Inertial Measurement Unit.

19. A range finder arrangement of an earth-moving machine, the arrangement comprising:

at least one range finder device for providing scanning data comprising point cloud of at least one detected object;

means for determining 3D position and orientation of the arrangement; and

at least one control unit configured to receive the detected data and process the received data,

wherein the range finder device is a solid-state device without internal movable mechanical elements, whereby the device is without internal scanning equipment,

the range finder device is arranged on the movable machine element and is configured to be moved together with the movable machine element,

the range finder device is configured to generate the point cloud based on time-of-flight of signals transmitted by a transmitting unit and reflecting signals received by a receiving unit comprising at least one detector, and

the control unit is configured to determine 3D position and orientation of the range finder device and to provide the point cloud with 3D coordinates in response to the input data.

20. A method for 3D scanning at a work site of an earth moving machine, wherein the earth moving machine comprises a carrier and at least one machine element movable relative to the carrier,

the method comprising:

producing scanning data of the surrounding of the earth moving machine by means of at least one range finder device arranged on the earth moving machine, wherein the scanned data comprises at least one point cloud of at least object detected in a field of the range finder device;

determining 3D position and orientation data of the earth moving machine at the work site;

inputting the produced scanned data and the determined position and orientation data to at least one control unit and calculating three-dimensional coordinates for the at least one target point of the produced scanned data;

executing the scanning by means of at least one range finder device being a solid-state device without internal movable mechanical elements and provided with a limited angle of view;

expanding the angle of view of the at least one range finder device being arranged on the movable machine element by moving the range finder device by means of the movable machine element;

determining distance between the range finder device and at least one object by means of time of flight measurement, and inputting the data to the control unit;

determining 3D position and orientation of the range finder device, and inputting the data to the control unit; and

calculating three-dimensional coordinates for the point cloud in response to the input data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2018
From: HOKKANEN, VISA; TERVAHAUTA, JUKKA; VESANEN, MIKKO
To: NOVATRON OY
Reel/Frame 045272/0274 →
Priority Claims (1)
FI 20175035 · Jan 18, 2017 · national
Continuity (1)
Related Publication 20180202132A1 · Jul 19, 2018
Cited By (1)
US 12,509,859