IP Library Granted Patent US 12,455,577
Granted Patent B2
US 12,455,577 · App. 18/039,952 · Granted Oct 28, 2025

Work vehicle and method for generating agricultural field external shape

Inventors: Yasuto Nishii (Osaka, JP); Yuji Yamaguchi (Osaka, JP); Hidetaka Suzuki (Osaka, JP); Masaaki Murayama (Okayama, JP)
Assignee: YANMAR HOLDINGS CO., LTD.
G05D1/6484A01B69/004A01D41/1278G05D1/0214G05D1/2295G05D1/2297G05D1/617G05D1/622G05D1/637G05D2105/15G05D2107/21
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Quick Facts
Patent No.
US 12,455,577
App. No.
18/039,952
Granted
Oct 28, 2025
Kind
B2
Abstract

A combine (work vehicle) is provided with: a positioning unit that obtains a measurement point indicating a position of a vehicle body; an initial external shape generating unit that generates an initial external shape of an agricultural field on the basis of a travel trajectory of the vehicle body constituted of a plurality of measurement points obtained when the vehicle body was manually driven along an external edge of the agricultural field; and an obstacle identification unit that identifies an obstacle for travel on the basis of the travel trajectory and generates an obstacle area including the identified obstacle.

Claims (50)

1. A work vehicle comprising:

a positioning unit configured to obtain a measurement point indicating a position of a vehicle body;

an initial external shape generation unit configured to generate an initial external shape of an agricultural field based on a swept path of the vehicle body, the swept path including a plurality of measurement points that are obtained when the vehicle body travels manually along an outer edge of the agricultural field, the plurality of measurement points including the measurement point, and wherein the initial external shape is defined by a plurality of straight lines connected to one another;

an obstacle identification unit configured to:

identify an obstacle associated with traveling of the vehicle body based on the swept path; and

generate an obstacle area including the identified obstacle, wherein the obstacle area is defined by a first straight line of the plurality of straight lines, a second straight line of the plurality of straight lines, the swept path, a line connecting the swept path and the first straight line, and a line connecting the swept path and the second straight line; and

an automated driving control unit configured to control automated traveling of the work vehicle based on the initial external shape, the swept path, and the obstacle area.

2. The work vehicle according to claim 1 , wherein the obstacle identification unit is configured to:

set an autonomous travel enabling area, where autonomous travel is made, on inside of the initial external shape of the agricultural field;

wherein the obstacle area overlaps the autonomous travel enabling area.

3. The work vehicle according to claim 2 , further comprising:

a corrected external shape generation unit configured to exclude at least the obstacle area from the initial external shape of the agricultural field to generate a corrected external shape of the agricultural field.

4. The work vehicle according to claim 3 , wherein the corrected external shape generation unit is configured to:

generate an exclusion area including the measurement point, which constitutes the swept path overlapping the autonomous travel enabling area, and the obstacle area.

5. The work vehicle according to claim 4 , further comprising:

a display unit configured to display at least the initial external shape and the corrected external shape of the agricultural field and the exclusion area;

an input unit configured to accept deformation or addition of the exclusion area displayed on the display unit; and

an exclusion area modification unit configured to perform the deformation or the addition of the exclusion area based on an operation accepted by the input unit.

6. The work vehicle according to claim 2 , further comprising:

a display unit configured to display at least the swept path and the autonomous travel enabling area;

an input unit configured to accept a change in a size of the autonomous travel enabling area displayed on the display unit; and

a travel area modification unit configured to change the size of the autonomous travel enabling area based on an operation accepted by the input unit.

7. The work vehicle according to claim 2 , wherein the autonomous travel enabling area is defined by a second plurality of straight lines,

the swept path intersects a third straight line of the second plurality of straight lines at a first point,

the swept path intersects a fourth straight line of the second plurality of straight lines at a second point,

the line connecting the swept path and the first straight line intersects the swept path at the first point, and

the line connecting the swept path and the second straight line intersects the swept path at the second point.

8. The work vehicle according to claim 2 , further comprising:

a corrected external shape generation unit configured to generate an exclusion area that is defined by the first straight line, the second straight line, a first extension of the line connecting the swept path and the first straight line, and a second extension of the line connecting the swept path and the second straight line,

wherein the first extension intersects the second extension.

9. The work vehicle according to claim 8 , wherein the corrected external shape generation unit is further configured to generate a corrected external shape of the agricultural field by modifying the initial external shape of the agricultural field to eliminate the portion of the initial external shape within the exclusion area and instead include a boundary along the exclusion area.

10. A method for generating an agricultural field external shape, the method comprising:

generating an external shape of an agricultural field when a work vehicle travels manually along an outer edge of the agricultural field,

wherein generating the external shape of the agricultural field includes:

obtaining a measurement point indicating a position of a vehicle body;

generating a swept path of the vehicle body based on the measurement point;

generating an initial external shape of the agricultural field based on the swept path, wherein the initial external shape is defined by a plurality of straight lines connected to one another;

identifying an obstacle associated with traveling of the work vehicle based on the swept path; and

generating an obstacle area including the identified obstacle, wherein the obstacle area is defined by a first straight line of the plurality of straight lines, a second straight line of the plurality of straight lines, the swept path, a line connecting the swept path and the first straight line, and a line connecting the swept path and the second straight line; and

controlling automated traveling of the work vehicle based on the initial external shape, the swept path, and the obstacle area.

11. The method according to claim 10 , further comprising:

setting an autonomous travel enabling area, where autonomous travel is performed based on the initial external shape of the agricultural field; and

wherein the obstacle area overlaps the autonomous travel enabling area.

12. The method according to claim 11 , further comprising:

excluding at least the obstacle area from the initial external shape of the agricultural field to generate a corrected external shape of the agricultural field.

13. The method according to claim 12 , further comprising:

generating an exclusion area including the measurement point, which constitutes the swept path overlapping the autonomous travel enabling area, and the obstacle area; and

excluding the exclusion area from the initial external shape of the agricultural field to generate the corrected external shape of the agricultural field.

14. The method according to claim 13 , further comprising performing, based on an operation input via an input unit, at least one of deformation and addition of the exclusion area displayed on a display unit.

15. The method according to claim 11 , further comprising changing, based on an operation input via an input unit, a size of the autonomous travel enabling area displayed on a display unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2023
From: NISHII, YASUTO; YAMAGUCHI, YUJI; SUZUKI, HIDETAKA; MURAYAMA, MASAAKI
To: YANMAR HOLDINGS CO., LTD.
Reel/Frame 064905/0452 →
Priority Claims (1)
JP 2020-200121 · Dec 2, 2020 · national
Continuity (1)
Related Publication 20240016074A1 · Jan 18, 2024
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