IP Library Granted Patent US 10,208,592
Granted Patent B2
US 10,208,592 · App. 14/956,638 · Granted Feb 19, 2019

Longwall optimization control

Inventor: Gareth Rimmington (South Yorks, GB)
Assignee: Joy Global Underground Mining LLC
E21C27/02E21C25/06E21C27/10E21C35/14E21C35/24E21D23/0004E21D23/0065E21D23/0454E21D23/066E21F13/06
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Quick Facts
Patent No.
US 10,208,592
App. No.
14/956,638
Granted
Feb 19, 2019
Kind
B2
Abstract

A method of controlling a longwall mining system, the longwall mining system including a longwall shearer, a conveyor, and a plurality of roof supports, such that the method includes creating, by a controller, a load profile of the conveyor representing a distribution of mineral along a length of the conveyor, calculating, by the controller, a desired change in the load profile based on the load profile of the conveyor, and controlling, by the controller, the longwall mining system to adjust the distribution of mineral on the conveyor based on the desired change in load profile.

Claims (48)

1. A method of controlling a longwall mining system, the longwall mining system including a longwall shearer, a conveyor, and a plurality of power roof supports, the method including:

creating, by a controller, a load profile of the conveyor representing a distribution of mineral along a length of the conveyor;

calculating, by the controller, a desired change in the load profile based on the load profile of the conveyor; and

controlling, by the controller, the longwall mining system to adjust the distribution of mineral on the conveyor based on the desired change in load profile.

2. The method of claim 1 , wherein controlling the longwall mining system to adjust the distribution of minerals on the conveyor includes at least one of altering the speed of the conveyor, altering a shearer haul speed of the shearer, initiating a snake delay, and removing the snake delay.

3. The method of claim 1 , wherein creating a load profile includes:

calculating, by a processor, a pile height of mineral on the conveyor;

determining the speed of the conveyor, and

creating the load profile based on the calculated pile height and the speed of the conveyor.

4. The method of claim 3 , wherein creating a load profile further includes:

measuring, by an electronic sensing device, the pile height of mineral on the conveyor;

comparing the calculated pile height and the measured pile height to determine a correction factor;

applying the correction factor to the calculated pile height to create a corrected pile height; and

creating the load profile based on the corrected pile height.

5. The method of claim 1 , wherein creating a load profile includes:

measuring a pile height of mineral on the conveyor at a plurality of points along the conveyor;

determining a speed of the conveyor, and

creating the load profile based on the measured pile height and the speed of the conveyor.

6. The method of claim 5 , wherein measuring the pile height at a plurality of points along the conveyor includes measuring the pile height by a plurality of electronic measuring devices.

7. The method of claim 5 , wherein measuring the pile height at a plurality of points along the conveyor includes measuring the pile height by an electronic measuring device that moves with the shearer.

8. A longwall mining system comprising:

a shearer;

a plurality of power roof supports;

a conveyor having a distribution of mineral along a length of the conveyor, the distribution of mineral represented by a load profile;

a plurality of motors for driving the shearer, the conveyor, and the power roof supports;

a controller configured to control the plurality of motors, wherein the controller controls the plurality of motors based on a desired change in the load profile.

9. The longwall mining system of claim 8 , further including an electronic measuring device coupled to a power roof support, the electronic measuring device positioned closer to a maingate end than a tailgate end of the longwall mining system.

10. The longwall mining system of claim 8 , further including a plurality of electronic measuring devices coupled to a plurality of roof supports.

11. The longwall mining system of claim 8 , further including an electronic measuring device coupled to the shearer, the electronic measuring device movable with the shearer.

12. A method of controlling a longwall mining system, the longwall mining system having a plurality of controllable components including a longwall shearer, a conveyor, and a plurality of power roof supports, the method comprising:

determining, by a controller, a desired change in a conveyor characteristic;

controlling, by the controller, the controllable components of the longwall mining system to achieve the desired change in conveyor characteristic; and

controlling the controllable components by executing a plurality of commands to adjust at least one of the controllable components, the plurality of commands executed according to a command hierarchy.

13. The method of claim 12 , further including creating the command hierarchy by ranking of a list of available commands, the commands including at least one from the following list: adjusting the speed of the conveyor, adjusting a shearer haul speed, adjusting the status of a snake delay.

14. The method of claim 12 , further including executing the plurality of commands according to a first command hierarchy when the desired change in conveyor characteristic is greater than zero, and executing the plurality of commands according to a second command hierarchy when the desired changed in conveyor characteristic is less than zero.

15. The method of claim 14 , wherein the first command hierarchy ranks adjusting the shearer haul speed higher than adjusting the speed of the conveyor.

16. The method of claim 14 , wherein the second command hierarchy ranks adjusting the status of the snake delay higher than adjusting the shearer haul speed.

17. The method of claim 12 , wherein the conveyor characteristic is a load profile or motor torque.

18. A longwall mining system comprising:

a plurality of controllable components including a conveyor, a shearer, and a plurality of power roof supports;

a conveyor characteristic having a desired change in conveyor characteristic;

a controller electrically coupled to the controllable components, the controller configured to execute a plurality of commands to adjust the operation of at least one of the controllable components to achieve the desired change in conveyor characteristic; and

a command hierarchy of commands, the controller configured to execute the plurality of commands according to the command hierarchy.

19. The longwall mining system of claim 18 , wherein the command hierarchy represents a ranking of a list of available commands including at least one from the following list: adjusting the speed of the conveyor, adjusting a shearer haul speed, adjusting the status of a snake delay.

20. The longwall mining system of claim 18 , wherein the plurality of commands is executed according to a first command hierarchy when the desired change in conveyor characteristic is greater than zero, and wherein the plurality of commands is executed according to a second command hierarchy when the desired changed in conveyor characteristic is less than zero.

21. The longwall mining system of claim 20 , wherein the first command hierarchy ranks adjusting the shearer haul speed higher than adjusting the speed of the conveyor.

22. The longwall mining system of claim 20 , wherein the second command hierarchy ranks adjusting the status of the snake delay higher than adjusting the shearer haul speed.

23. The longwall mining system of claim 18 , wherein the conveyor characteristic is a load profile or motor torque.

Assignments (2)
MERGER Recorded Jan 8, 2019
From: JOY MM DELAWARE, INC.
To: JOY GLOBAL UNDERGROUND MINING LLC
Reel/Frame 047925/0513 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2015
From: RIMMINGTON, GARETH
To: JOY MM DELAWARE, INC.
Reel/Frame 037188/0211 →
Continuity (1)
Related Publication 20170159431A1 · Jun 8, 2017
Cited By (1)
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