IP Library Granted Patent US 8,352,131
Granted Patent B2
US 8,352,131 · App. 13/307,944 · Granted Jan 8, 2013

Drainage plow control and method of controlling an elevation of a cutting edge of a drainage plow

Assignee: AG Leader Technology, Inc.
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Quick Facts
Patent No.
US 8,352,131
App. No.
13/307,944
Granted
Jan 8, 2013
Kind
B2
Abstract

A pitch plow and a method of controlling an elevation of a cutting edge of a pitch plow having a frame and a shank that is pivotally mounted to the frame, with the shank defining a cutting edge includes a control system that controls an elevation of the cutting edge. The control system includes a hydraulic control between the shank and the frame to pivotally adjust the shank and an electronic control to control the hydraulic actuator. The electronic control includes a processor and first and second sensors. The processor produces an output that adjusts the hydraulic control in a manner that controls the elevation of the cutting edge. The first sensor may measure GNS location and provides a GNS location input to the processor. The second sensor may measure orientation of said shank and provides a shank orientation input to the processor.

Claims (33)

1. A drainage plow control for controlling elevation of a drainage plow having a frame that is adapted to connect to a prime mover, a shank that is connected to the frame, and a hydraulic actuator that is adapted to adjust pitch of said shank relative to earth, said shank defining a cutting edge, wherein the pitch of said shank relative to earth causes a change in the elevation of said cutting edge, said drainage plow control comprising:

an electronic control and a hydraulic valve assembly, said hydraulic valve assembly adapted to be connected with the hydraulic actuator to adjust pitch of the shank, said electronic control being adapted to activate said hydraulic valve assembly;

wherein said electronic control comprises a processor and at least one sensor, said at least one sensor adapted to be positioned on the drainage plow and comprising a GNS receiver that is adapted to measure current elevation relative to earth and to provide a GNS location input to said processor, said at least one sensor further comprising an inclinometer that is adapted to measure current pitch relative to earth and to provide a current pitch input to said processor, wherein said processor activates said hydraulic valve assembly from said inputs in a manner that adjusts the hydraulic actuator to affect the pitch of the shank relative to earth, wherein said electronic control combines the GNS location input, the current pitch input and a desired elevation of said cutting edge relative to earth to provide a valve control output and wherein said electronic control activates said hydraulic valve assembly as a function of the valve control output.

2. The drainage plow control as claimed in claim 1 wherein said processor combines the GNS location input and a desired elevation of said cutting edge relative to earth to provide a desired pitch of said shank and wherein said processor combines the desired pitch of said shank with the current pitch input to provide the valve control output.

3. The drainage plow control as claimed in claim 2 wherein said processor combines the GNS location input with the desired elevation of said cutting edge relative to earth to provide an elevation error value and determines the desired pitch of said shank from the elevation error value.

4. The drainage plow control as claimed in claim 1 wherein said GNS receiver has an accuracy that is no better than 2 inches.

5. The drainage plow control as claimed in claim 4 wherein said GNS receiver has an accuracy that is no better than 5 inches.

6. The drainage plow control as claimed in claim 1 wherein said inclinometer is a multiple-axis inclinometer that is further adapted to measure roll of the shank relative to earth.

7. The drainage plow control as claimed in claim 1 wherein said processor is adapted to determine a calibration parameter, said calibration parameter defining a pitch of the shank relative to earth at which said edge does not substantially change in elevation.

8. The drainage plow control as claimed in claim 7 wherein said processor is adapted to determine the calibration parameter from the GNS location input and the current pitch input.

9. The drainage plow control as claimed in claim 7 wherein said processor is adapted to determine the calibration parameter during a calibration procedure prior to operation of the drainage plow.

10. The drainage plow control as claimed in claim 7 wherein said processor is adapted to repetitively update the calibration parameter during operation of the drainage plow.

11. The drainage plow control as claimed in claim 1 wherein said processor is adapted to access a desired drainage pipe profile to obtain the desired elevation.

12. A method of controlling the elevation of a cutting edge of a drainage plow, said drainage plow having a frame that is adapted to connect to a prime mover, a shank that is connected to said frame and a hydraulic actuator that is adapted to adjust pitch of said shank relative to earth, said shank defining a cutting edge, wherein the pitch of said shank relative to earth causes a change in the elevation of said cutting edge, said method comprising:

positioning at least one sensor on the drainage plow, said at least one sensor comprising a GNS receiver and an inclinometer, measuring current elevation of said cutting edge relative to earth with said GNS receiver and current pitch of said shank relative to earth with said inclinometer;

providing the current elevation of said cutting edge relative to earth and the pitch of said shank relative to earth to a processor and combining the current elevation of said cutting edge relative to earth, a desired elevation of said cutting edge relative to earth and current pitch of said shank relative to earth using said processor to provide a valve control output; and

supplying the valve control output to a hydraulic valve assembly connected with said hydraulic actuator and activating said hydraulic valve assembly with the valve control output of said processor.

13. The method as claimed in claim 12 including combining the GNS location input and a desired elevation of said cutting edge relative to earth to provide a desired pitch of said shank and combining the desired pitch of said shank with the current pitch input to provide the valve control output.

14. The method as claimed in claim 13 including combining the GNS location input with the desired elevation of said cutting edge relative to earth to provide an elevation error value and determining the desired pitch of said shank from the elevation error value.

15. The method as claimed in claim 12 wherein said GNS receiver has an accuracy that is no better than 2 inches.

16. The method as claimed in claim 15 wherein said GNS receiver has an accuracy that is no better than 5 inches.

17. The method as claimed in claim 12 wherein said inclinometer is a multiple-axis inclinometer and further including measuring roll of the shank relative to earth.

18. The method as claimed in claim 12 including determining a calibration parameter using said processor, the calibration parameter defining a pitch of the shank relative to earth at which said edge does not substantially change in elevation.

19. The method as claimed in claim 18 including determining the calibration parameter using said processor from the measured current elevation of said cutting edge relative to earth and current pitch of said shank relative to earth.

20. The method as claimed in claim 18 including determining the calibration parameter using said processor during a calibration procedure prior to operation of the drainage plow.

21. The method as claimed in claim 18 including repetitively updating the calibration parameter using said processor during operation of the drainage plow.

22. The method as claimed in claim 12 wherein said processor accesses a desired drainage pipe profile to obtain the desired elevation.

23. A drainage plow, comprising:

a frame that is adapted to connect to a prime mover;

a shank that is connected to, the frame;

a hydraulic actuator that is adapted to adjust pitch of said shank relative to earth, said shank defining a cutting edge, wherein the pitch of said shank relative to earth causes a change in the elevation of said cutting edge; and

a drainage plow control comprising an electronic control and a hydraulic valve assembly, said hydraulic valve assembly adapted to be connected with said hydraulic actuator to adjust pitch of the shank, said electronic control being adapted to activate said hydraulic valve assembly;

wherein said electronic control comprises a processor and at least one sensor, said at least one sensor comprising a GNS receiver that is adapted to measure current elevation relative to earth and to provide a GNS location input to said processor, said at least one sensor further comprising an inclinometer that is adapted to measure current pitch of said shank relative to earth and to provide a current pitch input to said processor, wherein said processor activates said hydraulic valve assembly from said inputs in a manner that adjusts said hydraulic actuator to affect the pitch of said shank relative to earth, wherein said electronic control combines the GNS location input, the current pitch input and a desired elevation of said cutting edge relative to earth to provide a valve control output and wherein said electronic control activates said hydraulic valve assembly as a function of the valve control output.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2012
From: GRADIENT, INC.
To: AG LEADER TECHNOLOGY, INC.
Reel/Frame 027818/0739 →
Continuity (3)
Continuation 12333725 · Dec 12, 2008
Provisional Application 61022851 · Jan 23, 2008
Related Publication 20120073842A1 · Mar 29, 2012