IP Library › Granted Patent US 12,262,655
Granted Patent B2
US 12,262,655 · App. 17/952,368 · Granted Apr 1, 2025

Agricultural machine

Inventors: Koichi Shintani (Sakai, JP); Takanori Morimoto (Sakai, JP); Tomohiro Kinoshita (Sakai, JP); Ken Sakuta (Sakai, JP); Fumiya Yoshimura (Sakai, JP); Tsuyoshi Harada (Sakai, JP); Sho Watanabe (Sakai, JP)
Assignee: KUBOTA CORPORATION
A01B69/008G05D1/0214
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Quick Facts
Patent No.
US 12,262,655
App. No.
17/952,368
Granted
Apr 1, 2025
Kind
B2
Abstract

An agricultural machine includes a vehicle body, an obstacle detector to detect obstacles, an autonomous travel controller to perform autonomous travel of the vehicle body, the autonomous travel controller being configured or programmed to, when performing the autonomous travel, stop the vehicle body based on detection information about an obstacle detected by the obstacle detector, and a mode switch to switch a mode during the autonomous travel in an agricultural field between an effective mode in which the stopping of the vehicle body based on the detection information is allowed and an ineffective mode in which the stopping of the vehicle body based on the detection information is not allowed.

Claims (59)

1. An agricultural machine comprising:

a vehicle body;

an obstacle detector to detect obstacles, the obstacle detector, when detecting an obstacle, being configured to issue detection information about the detected obstacle;

an autonomous travel controller to perform autonomous travel of the vehicle body, the autonomous travel controller being configured or programmed to, when being in an effective mode and receiving the detection information from the obstacle detector while performing the autonomous travel, execute stopping travel of the vehicle body based on the detection information; and

a mode switch operable to switch the autonomous travel controller between the effective mode and an ineffective mode in which the autonomous travel controller when performing the autonomous travel does not execute the stopping travel of the vehicle body based on the detection information regardless of whether the autonomous travel controller receives the detection information from the obstacle detector; wherein

the stopping travel of the vehicle body based on the detection information is a series of processes which includes:

(a) determining, based on the detection information, whether or not the travel of the vehicle body is to be stopped; and

(b) actually stopping travel of the vehicle body upon determining that the travel of the vehicle body is to be stopped.

2. The agricultural machine according to claim 1 , further comprising:

a support to which the obstacle detector is attached, the support being capable of changing a position of the obstacle detector to a detection position where the obstacle detector is able to detect obstacles and to a retracted position where the obstacle detector is unable to detect obstacles; wherein

the autonomous travel controller is configured or programmed to be allowed to perform the autonomous travel when the autonomous travel controller is in the ineffective mode and the obstacle detector is in the retracted position.

3. The agricultural machine according to claim 2 , further comprising:

a seat-occupation detector to detect whether an operator's seat is occupied; wherein

the autonomous travel controller is configured or programmed to be allowed to perform the autonomous travel when the seat-occupation detector is detecting that the operator's seat is occupied.

4. The agricultural machine according to claim 1 , further comprising:

a support to which the obstacle detector is attached, the support being capable of changing a position of the obstacle detector to a detection position where the obstacle detector is able to detect obstacles and to a retracted position where the obstacle detector is unable to detect obstacles; and

a switch restraint configured to programmed to:

allow the mode switch to switch from the effective mode to the ineffective mode when the obstacle detector is in the retracted position; and

not allow the mode switch to switch from the effective mode to the ineffective mode when the obstacle detector is in the detection position.

5. The agricultural machine according to claim 1 , further comprising:

a seat-occupation detector to detect whether an operator's seat is occupied; and

a switch restraint configured or programmed to:

allow the mode switch to switch from the effective mode to the ineffective mode when the seat-occupation detector is detecting that the operator's seat is occupied; and

not allow the mode switch to switch from the effective mode to the ineffective mode when the seat-occupation detector detects that the operator's seat is not occupied.

6. The agricultural machine according to claim 1 , further comprising:

a seat-occupation detector to detect whether an operator's seat is occupied; wherein

the autonomous travel controller, when performing the autonomous travel, is configured or programmed to:

continue performing the autonomous travel when the seat-occupation detector is detecting that the operator's seat is occupied; and

stop the autonomous travel when the seat-occupation detector detects that the operator's seat is not occupied.

7. The agricultural machine according to claim 1 , further comprising:

a support to which the obstacle detector is attached, the support being capable of changing a position of the obstacle detector to a detection position where the obstacle detector is able to detect obstacles and to a retracted position where the obstacle detector is unable to detect obstacles; wherein

the autonomous travel controller, when being in the ineffective mode and performing the autonomous travel, is configured or programmed to:

continue performing the autonomous travel when the obstacle detector is in the retracted position; and

stop the autonomous travel when the position of the obstacle detector moves from the retracted position to the detection position.

8. The agricultural machine according to claim 1 , further comprising:

a prime mover; and

an ignition switch operable to perform switching between ON and OFF of driving of the prime mover; wherein

the mode switch is operable to:

set the effective mode as a default according to switching of the ignition switch from OFF to ON; and

when the ineffective mode is set, switch the ineffective mode to the effective mode according to switching of the ignition switch from ON to OFF.

9. The agricultural machine according to claim 1 , further comprising a display to display whether the autonomous travel controller is in the effective mode or in the ineffective mode.

10. The agricultural machine according to claim 1 , wherein the autonomous travel controller is configured or programmed to stop the vehicle body if the autonomous travel controller, when in the effective mode, acquires detection of an obstacle by the obstacle detector as the detection information.

11. The agricultural machine according to claim 1 , wherein, the obstacle detector is operable to, even when detecting an obstacle, not output detection of the obstacle to the autonomous travel controller when in the ineffective mode.

12. The agricultural machine according to claim 1 , wherein the obstacle detector is operable to:

notify the autonomous travel controller when in the effective mode that an obstacle is detected during the autonomous travel; and

not notify the autonomous travel controller when in the ineffective mode that an obstacle is detected.

13. The agricultural machine according to claim 1 , further comprising:

a support to which the obstacle detector is attached, the support being capable of changing a position of the obstacle detector to a detection position where the obstacle detector is able to detect obstacles and to a retracted position where the obstacle detector is unable to detect obstacles; wherein

the autonomous travel controller is configured or programmed to:

be allowed to start performing the autonomous travel when the autonomous travel controller is in the effective mode and the obstacle detector is in the detection position;

stop or not be allowed to start performing the autonomous travel when the autonomous travel controller is in the effective mode and the obstacle detector is in the retracted position;

stop or not be allowed to start performing the autonomous travel when the autonomous travel controller is in the ineffective mode and the obstacle detector is in the detection position; and

be allowed to start performing the autonomous travel when the autonomous travel controller is in the ineffective mode and the obstacle detector is in the retracted position.

14. The agricultural machine according to claim 13 , further comprising:

a seat-occupation detector to detect whether an operator's seat is occupied; wherein

the autonomous travel controller is configured or programmed to be allowed to perform the autonomous travel when the seat-occupation detector is detecting that the operator's seat is occupied.

15. The agricultural machine according to claim 13 , further comprising a switch restraint configured or programmed to:

allow the mode switch to switch from the effective mode to the ineffective mode when the obstacle detector is in the retracted position; and

not allow the mode switch to switch from the effective mode to the ineffective mode when the obstacle detector is in the detection position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2023
From: SHINTANI, KOICHI; MORIMOTO, TAKANORI; KINOSHITA, TOMOHIRO; SAKUTA, KEN; YOSHIMURA, FUMIYA; HARADA, TSUYOSHI; WATANABE, SHO
To: KUBOTA CORPORATION
Reel/Frame 062360/0353 →
Priority Claims (1)
JP 2020-065145 · Mar 31, 2020 · national
Continuity (2)
Continuation PCTJP2021012614 · Mar 25, 2021
Related Publication 20230018138A1 · Jan 19, 2023
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