Electrical control system for apparatus and method for continuous underground mining
First Claim
1. A method of controlling the operation of a continuous underground mining system including a continuous miner having a forward end with a cutting means and a rear end, a roof bolting machine having an a front end operatively connected to and trailing the rear end of the continuous miner, an articulated tramming conveyor having an inby end operatively connected to and trailing a rear end of said roof bolting machine, said tramming conveyor having an outby end spaced from its inby end, and a control cab operatively connected to and trailing said tramming conveyor, said method comprising the steps of:
- a) providing a master computer processor on said continuous miner,b) providing at least one slave computer processor for controlling elements of said mining system other than said continuous miner, under the direction of said master computer processor,c) providing a pair of parallel data communication highways between said master computer processor and said slave computer processor,d) providing a radio communication path between said master computer processor and the outby end of said tramming conveyor,e) monitoring the functional status of said data communication highways,f) operating said mining system through said master computer processor in an automatic mining mode of operation when both of said data communication highways are functional,g) operating said mining system through said master computer processor in a reverse mode of operation if either of said data communication highways fails to function, whereby all mining operations cease and said mining system may be reversed out of a mine hole, andh) operating said mining system through said master computer processor in a manual, radio controlled mode of operation over said radio communication path if both data communication highways cease to function, whereby the master computer processor stops all automatic operations and is controlled solely by control signals over said radio communication path.
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Accused Products
Abstract
Apparatus for controlling the operation of an underground mining system including a continuous miner, a roof bolting machine, a tramming conveyor and a control cab operatively connected to the tramming conveyor. The apparatus includes a master computer processor on the continuous miner and at least one slave computer processor under the direction of the master computer processor for controlling elements of the mining system other than the continuous miner. A pair of parallel data communication highways connect the master computer processor and the slave computer processor and the functional status of the data communication highways is monitored. A radio communication path is provided between the master computer processor and the mining system. The master computer processor operates the mining system in an automatic mining mode of operation when both data communication highways are functional and operates the mining system in a reverse mode of operation if either data communication highway fails to function. In the reverse mode, all mining operations stop and the mining system can be reversed out of a mine hole. The master computer processor operates the mining system in a manual, radio controlled mode of operation if both data communication highways cease to function.
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Citations
12 Claims
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1. A method of controlling the operation of a continuous underground mining system including a continuous miner having a forward end with a cutting means and a rear end, a roof bolting machine having an a front end operatively connected to and trailing the rear end of the continuous miner, an articulated tramming conveyor having an inby end operatively connected to and trailing a rear end of said roof bolting machine, said tramming conveyor having an outby end spaced from its inby end, and a control cab operatively connected to and trailing said tramming conveyor, said method comprising the steps of:
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a) providing a master computer processor on said continuous miner, b) providing at least one slave computer processor for controlling elements of said mining system other than said continuous miner, under the direction of said master computer processor, c) providing a pair of parallel data communication highways between said master computer processor and said slave computer processor, d) providing a radio communication path between said master computer processor and the outby end of said tramming conveyor, e) monitoring the functional status of said data communication highways, f) operating said mining system through said master computer processor in an automatic mining mode of operation when both of said data communication highways are functional, g) operating said mining system through said master computer processor in a reverse mode of operation if either of said data communication highways fails to function, whereby all mining operations cease and said mining system may be reversed out of a mine hole, and h) operating said mining system through said master computer processor in a manual, radio controlled mode of operation over said radio communication path if both data communication highways cease to function, whereby the master computer processor stops all automatic operations and is controlled solely by control signals over said radio communication path. - View Dependent Claims (2, 3, 4, 5, 6)
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7. Apparatus for controlling the operation of a continuous underground mining system including a continuous miner having cutting means, a roof bolting machine having a front end operatively connected to and following a rear end of the continuous miner, an articulated tramming conveyor having an inby end operatively connected to and trailing a rear end of the roof bolting machine, and a control cab operatively connected to and trailing said tramming conveyor, said apparatus comprising:
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a) a master computer processor on said continuous miner, b) at least one slave computer processor for controlling elements of said mining system, other than said continuous miner, under the direction of said master computer processor, c) a pair of parallel data communication highways between said master computer processor and said slave computer processor, d) a radio communication path between said master computer processor and an outby end of said tramming conveyor, e) monitoring means for monitoring the functional status of said data communication highways, f) means in said master computer processor for operating said mining system, in response to said monitoring means, in an automatic mining mode of operation when both of said data communication highways are functional, g) means in said master computer processor for operating said mining system, in response to said monitoring means, in a reverse mode of operation if either of said data communication highways fails to function, whereby all mining operations cease and said mining system may be reversed out of a mine hole, and h) means in said master computer processor for operating said mining system, in response to said monitoring means, in a manual, radio-controlled mode of operation using said radio communication path if both data communication highways cease to function, whereby said master computer processor stops all automatic operations and is controlled solely by control signals over said radio communication path. - View Dependent Claims (8, 9, 10, 11, 12)
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Specification