IP Library › Granted Patent US 10,768,622
Granted Patent B2
US 10,768,622 · App. 15/838,358 · Granted Sep 8, 2020

Automatic traveling work vehicle and method for monitoring automatic traveling work vehicle

Inventor: Yushi Matsuzaki (Sakai, JP)
Assignee: KUBOTA CORPORATION
G05D1/0088A01B69/008G05D1/0212G05D2201/0201
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Quick Facts
Patent No.
US 10,768,622
App. No.
15/838,358
Granted
Sep 8, 2020
Kind
B2
Abstract

An automatic traveling work vehicle includes position calculation circuitry, actual work command generation circuitry, work control circuitry, virtual work command generation circuitry, and monitoring circuitry. The actual work command generation circuitry is configured to generate an actual work command in accordance with a position of the automatic traveling work vehicle. The work control circuitry is configured to control the automatic traveling work vehicle to work at the position according to the actual work command. The virtual work command generation circuitry is configured to generate a virtual work command in accordance with the position of the automatic traveling work vehicle, the automatic traveling work vehicle being not actually controlled according to the virtual work command. The monitoring circuitry is configured to determine whether an abnormality occurs in an operation of the automatic traveling work vehicle based on the actual work command and the virtual work command.

Claims (31)

1. An automatic traveling work vehicle, comprising:

position calculation circuitry configured to calculate positions of the automatic traveling work vehicle based on positioning data from a satellite positioning module;

actual work command generation circuitry configured to generate an actual work command to perform a work event at a work position among the positions of the automatic traveling work vehicle;

work control circuitry configured to control the automatic traveling work vehicle to work at the work position according to the actual work command;

virtual work command generation circuitry configured to generate a virtual work command in accordance with the work event at the work position, the automatic traveling work vehicle being not actually controlled according to the virtual work command; and

monitoring circuitry configured to determine whether an abnormality occurs in an operation of the automatic traveling work vehicle based on the actual work command and the virtual work command.

2. The automatic traveling work vehicle according to claim 1 , further comprising:

route generation circuitry configured to generate a travel route;

travel control circuitry configured to control automatic traveling of the automatic traveling work vehicle along the travel route; and

work planning circuitry configured to generate a work plan defining a work to be performed during the automatic traveling.

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

a first controlling unit including the route generation circuitry, the work planning circuitry, and the virtual work command generation circuitry;

a second controlling unit including the actual work command generation circuitry; and

a third controlling unit including the monitoring circuitry,

wherein the first controlling unit, the second controlling unit, and the third controlling unit independently operate.

4. The automatic traveling work vehicle according to claim 3 , wherein the first controlling unit includes a data processing terminal equipped with a touch panel.

5. The automatic traveling work vehicle according to claim 1 ,

wherein the monitoring circuitry is configured to compare the actual work command with the virtual work command when the automatic traveling work vehicle travels along a travel route, and

wherein the monitoring circuitry is configured to determine the abnormality in the operation of the automatic traveling work vehicle when the actual work command and the virtual work command do not correspond to each other.

6. An automatic traveling work vehicle, comprising:

position calculation means for calculating positions of the automatic traveling work vehicle based on positioning data from a satellite positioning module;

actual work command generation means for generating an actual work command to perform a work event at a work position among the positions of the automatic traveling work vehicle;

work control means for controlling the automatic traveling work vehicle to work at the work position according to the actual work command;

virtual work command generation means for generating a virtual work command in accordance with the work event at the work position, the automatic traveling work vehicle being not actually controlled according to the virtual work command; and

monitoring means for determining whether an abnormality occurs in an operation of the automatic traveling work vehicle based on the actual work command and the virtual work command.

7. A method for monitoring an automatic traveling work vehicle, comprising:

calculating positions of the automatic traveling work vehicle based on positioning data from a satellite positioning module;

generating an actual work command to perform a work event at a work position among the positions of the automatic traveling work vehicle;

controlling the automatic traveling work vehicle to work at the work position according to the actual work command;

generating a virtual work command in accordance with the work event at the work position, the automatic traveling work vehicle being not actually controlled according to the virtual work command; and

determining whether an abnormality occurs in an operation of the automatic traveling work vehicle based on the actual work command and the virtual work command.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2019
From: MATSUZAKI, YUSHI
To: KUBOTA CORPORATION
Reel/Frame 048114/0956 →
Priority Claims (1)
JP 2016-244522 · Dec 16, 2016 · national
Continuity (1)
Related Publication 20180173233A1 · Jun 21, 2018