IP Library Granted Patent US 12,349,616
Granted Patent B2
US 12,349,616 · App. 18/543,163 · Granted Jul 8, 2025

Implement automation system

Inventor: Gerald Ray Johnson (Newton, KS)
Assignee: Kubota Corporation
A01B69/008G05D1/622G05D1/644G05D1/646G05D1/648G05D1/672G05D2105/05G05D2105/15
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Quick Facts
Patent No.
US 12,349,616
App. No.
18/543,163
Granted
Jul 8, 2025
Kind
B2
Abstract

An automated operational and mission planning system for power unit and implement operations. The system generating connection profiles based on power unit profiles and implement profiles to facilitate operational controls for a combined machine system. The mission planning system generating plans for selected projects using implement-based operation instructions. The operational system onboard the power unit executing mission plan with connection profile adjustments to drive implement operation.

Claims (37)

1. An automated machine system, comprising:

a power unit, comprising:

a mobility system including a steering system and a propulsion system, an implement connection system including a hitch and a power output;

a control unit comprising a control unit processor and a control unit memory, which stores a power unit profile, a connection profile and a mission plan,

a machine actuator system having a steering control, a speed control and a power output control, and

an automation sensor;

an implement, comprising an implement connection system including a hitch frame;

wherein the mission plan includes a path plan, power unit operation instructions and implement operation instructions;

wherein the connection profile includes modifications for the power unit operation instructions and wherein the connection profile also includes implement operation translations, which convert the implement operation instructions into operation instructions for the power unit to run the implement;

wherein the control unit processor executes the mission plan using the power unit profile and the connection profile, wherein, when the control unit identifies one of the power unit operation instructions from the mission plan and determines that the connection profile includes a corresponding implement modification, the control unit modifies the power unit operation instruction based on a corresponding one of the modifications for the power unit operation instruction and executes a modified power unit operation, and

wherein, when the control unit identifies one of the implement operation instructions, the control unit applies a corresponding one of the implement operation translations and executes a corresponding one of the operation instructions for the power unit.

2. The automated machine system according to claim 1 , wherein the connection profile is received from a networked server system over a communication network, and wherein the connection profile was generated based on analysis of the power unit profile and an implement profile corresponding to characteristics and features of the implement.

3. The automated machine system according to claim 1 , wherein the power unit is selected from a plurality of power units and the implement is selected from a plurality of implements.

4. The automated machine system according to claim 1 , wherein the implement connection system includes a power intake that connects to the power output of the power unit.

5. The automated machine system according to claim 1 , wherein the implement includes onboard controls, and the connection profile includes control instructions for the power unit to communicate with the implement.

6. The automated machine system according to claim 1 , wherein the control unit generates integrated telematics data based on the connection profile.

7. An automation management system for machine systems, comprising:

a networked server system comprising:

a server communication card configured to communicate over a communication network,

a server memory drive, and

a server controller operatively connected to the server communication card and the server memory drive, the server controller is configured to manage the server memory drive and communication over the server communication card;

a machine system comprising:

a power unit selected from one of a plurality of power units, wherein each power unit comprises:

a mobility system including a steering system and a propulsion system,

an implement connection system including a hitch and a power output;

a control unit comprising a control unit processor and a control unit memory, which stores a power unit profile, a connection profile and a mission plan,

a machine actuator system having a steering control, a speed control and a power output control, and

an automation sensor;

an implement selected from a plurality of implements, wherein each implement comprises an implement connection system including a hitch frame;

wherein the networked server includes a mission planning system operated by the server controller in communication with the server memory drive, wherein the mission planning system receives a mission request having an operational zone and identified performance activity, wherein the mission planning system also receives a selection of the power unit and the implement;

wherein the server controller operates the mission planning system to generate a mission plan from the mission request, the power unit and the implement, along with a connection profile for the machine system comprising the power unit attached to the implement, wherein the mission plan includes a path plan and an implement operation; and

wherein the mission plan is loadable into the control unit for the power unit and executable by the control unit using modification information and translation information in the connection profile.

8. The automation management system according to claim 7 , wherein the networked server includes a profile generation system operated by the server controller in communication with the server memory drive, wherein the profile generation system receives and analyzes a power unit profile and an implement profile to determine the modification information for power unit operations and the translation information to convert the implement operation into a power unit operation to drive the implement operation.

9. The automation management system according to claim 7 , wherein the machine system includes an obstacle avoidance system comprising at least one sensor, wherein the obstacle avoidance system identifies an obstacle based on a signal from the at least one sensor and determines an avoidance operation for the machine system, and wherein the control unit modifies application of the mission plan based on the avoidance operation.

10. The automation management system according to claim 7 , wherein the implement connection system includes a power intake that connects to the power output of the power unit.

11. The automation management system according to claim 7 , wherein the implement includes onboard controls, and the connection profile includes control instructions for the power unit to communicate with the implement.

12. The automation management system according to claim 7 , wherein the networked server system receives integrated telematics data from the power unit, wherein the control unit generates the integrated telematics data based on the connection profile.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2023
From: JOHNSON, GERALD RAY
To: KUBOTA CORPORATION
Reel/Frame 065896/0240 →
Continuity (2)
Provisional Application 63437895 · Jan 9, 2023
Related Publication 20240231385A1 · Jul 11, 2024
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