IP Library Granted Patent US 10,316,490
Granted Patent B2
US 10,316,490 · App. 15/611,472 · Granted Jun 11, 2019

Controlling a crowd parameter of an industrial machine

Inventor: Mooyoung Lee (Milwaukee, WI)
Assignee: Joy Global Surface Mining Inc
E02F3/435E02F3/30E02F3/304E02F3/425E02F3/46E02F9/2016E02F9/265
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Quick Facts
Patent No.
US 10,316,490
App. No.
15/611,472
Granted
Jun 11, 2019
Kind
B2
Abstract

A controller that includes a memory and an electronic processor. The electronic processor receives a first signal and a second signal. The electronic processor determines a retract torque limit based on the first signal and the second signal. The electronic processor sets a retract torque parameter of a crowd motor to the retract torque limit that has been determined. The electronic processor operates the crowd motor at or below the retract torque parameter.

Claims (61)

1. A controller comprising:

a memory; and

an electronic processor electrically connected to the memory, the electronic processor configured to

receive a first signal related to a first parameter,

receive a second signal related to a second parameter,

determine a retract torque limit based on the first signal and the second signal,

set a retract torque parameter of a crowd motor to the retract torque limit that has been determined, and

operate the crowd motor at or below the retract torque parameter.

2. The controller of claim 1 , wherein the retract torque limit is determined as a function of the first parameter and the second parameter.

3. The controller of claim 2 , wherein the function is selected from a group consisting of a linear function, a non-linear function, a quadratic function, a cubic function, an exponential function, a hyperbolic function, and a power function.

4. The controller of claim 2 , wherein the first parameter is an angle of a dipper handle and the second parameter is an angle of a hoist rope.

5. The controller of claim 1 , wherein the retract torque limit corresponds to a maximum amount of retract torque that is required for a given portion of a digging cycle of an industrial machine.

6. The controller of claim 5 , wherein the retract torque limit early in the digging cycle has a greater value than the retract torque limit late in the digging cycle.

7. The controller of claim 5 , wherein the retract torque limit is determined as a function of a tipping moment of the industrial machine.

8. A controller comprising:

a memory; and

an electronic processor electrically connected to the memory, the electronic processor configured to

receive a first signal related to a first parameter,

receive a second signal related to a second parameter,

determine a value of the first parameter based on the first signal,

compare the value of the first parameter to a first threshold,

determine a value of the second parameter based on the second signal,

compare the value of the second parameter to a second threshold,

determine a retract torque limit based on the comparison of the value of the first parameter to the first threshold and the comparison of the value of the second parameter to the second threshold,

compare the retract torque limit to a third threshold,

set a retract torque parameter of a crowd motor to a first value if the retract torque limit is greater than or equal to the third threshold,

set the retract torque parameter of the crowd motor to a second value if the retract torque limit is less than the third threshold, the first value is greater than the second value, and

operate the crowd motor at or below the retract torque parameter.

9. The controller of claim 8 , wherein the retract torque limit is determined as a function of the value of the first parameter and the value of the second parameter.

10. The controller of claim 9 , wherein the function is selected from a group consisting of a linear function, a non-linear function, a quadratic function, a cubic function, an exponential function, a hyperbolic function, and a power function.

11. The controller of claim 8 , wherein the first parameter is an angle of a dipper handle and the second parameter is an angle of a hoist rope.

12. The controller of claim 8 , wherein the retract torque limit corresponds to a maximum amount of retract torque that is required for a given portion of a digging cycle of an industrial machine.

13. The controller of claim 12 , wherein the retract torque limit early in the digging cycle has a greater value than the retract torque limit late in the digging cycle.

14. The controller of claim 12 , wherein the retract torque limit is determined as a function of a tipping moment of the industrial machine.

15. The controller of claim 8 , wherein the first threshold is related to a predetermined range of dipper handle angle values.

16. The controller of claim 8 , wherein the second threshold is related to a predetermined range of hoist rope angle values.

17. A controller comprising:

a memory; and

an electronic processor electrically connected to the memory, the electronic processor configured to

receive a first signal related to a dipper handle angle,

receive a second signal related to a hoist rope angle,

determine a retract torque value based on the first signal and the second signal,

compare the retract torque value to a retract torque threshold value, and

responsive to determining the retract torque value is greater or equal to the retract torque threshold value, set a retract torque of a crowd motor to a maximum value.

18. A controller comprising:

a memory; and

an electronic processor electrically connected to the memory, the electronic processor configured to

receive a first signal related to a dipper handle angle,

receive a second signal related to a hoist rope angle,

determine a retract torque value based on the first signal and the second signal,

compare the retract torque value to a retract torque threshold value, and

responsive to determining the retract torque value is less than the retract torque threshold value, set a retract torque of a crowd motor to a default value.

19. A controller comprising:

a memory; and

an electronic processor electrically connected to the memory, the electronic processor configured to

receive a first signal related to a dipper handle angle,

receive a second signal related to a hoist rope angle,

determine a retract torque value based on the first signal and the second signal,

compare the retract torque value to a retract torque threshold value, and

responsive to determining the retract torque value is less than the retract torque threshold value, set a retract torque of a crowd motor to a value that is determined as a function of a parameter of an industrial machine.

20. The controller of claim 19 , wherein the parameter of the industrial machine includes the dipper handle angle and the hoist rope angle.

Assignments (2)
MERGER Recorded Sep 19, 2018
From: HARNISCHFEGER TECHNOLOGIES, INC.
To: JOY GLOBAL SURFACE MINING INC
Reel/Frame 047111/0786 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2017
From: LEE, MOOYOUNG
To: HARNISCHFEGER TECHNOLOGIES, INC.
Reel/Frame 042567/0867 →
Continuity (4)
Continuation 14987548 · Jan 4, 2016
Continuation 14601716 · Jan 21, 2015
Provisional Application 61929646 · Jan 21, 2014
Related Publication 20170268199A1 · Sep 21, 2017