IP Library Granted Patent US 11,453,309
Granted Patent B2
US 11,453,309 · App. 16/434,400 · Granted Sep 27, 2022

Electric power distribution system and method for electric mining machine

Inventors: Brian R Huff (Newbury Park, CA); Kyle Hickey (Moorpark, CA); Christopher Vochoska (Simi Valley, CA)
Assignee: Artisan Vehicle Systems, Inc.
B60L58/13B60K1/04B60L7/10B60L53/53B60K2001/001
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Quick Facts
Patent No.
US 11,453,309
App. No.
16/434,400
Granted
Sep 27, 2022
Kind
B2
Abstract

An electric power distribution system and method for an electric mining machine is described. In one embodiment, a method for electric power distribution includes receiving information associated with a state of charge of a first battery pack that supplies electric power to a front electric motor configured to drive a front axle of an electric mining machine. The method also includes receiving information associated with a state of charge of a second battery pack that supplies electric power to a rear electric motor configured to drive a rear axle of the electric mining machine. The method includes comparing the state of charge of the first battery pack and the second battery pack and, upon determining that the state of charge of the second battery pack is greater than the state of charge of the first battery pack, increasing electric power to the rear electric motor of the electric mining machine.

Claims (44)

1. A method for electric power distribution in an electric mining machine, the method comprising:

receiving information associated with a state of charge of a first battery pack, wherein the first battery pack supplies electric power to a front electric motor configured to drive a front axle of an electric mining machine;

receiving information associated with a state of charge of a second battery pack, wherein the second battery pack supplies electric power to a rear electric motor configured to drive a rear axle of the electric mining machine;

comparing the state of charge of the first battery pack to the state of charge of the second battery pack; and

upon determining that (1) the electric mining machine is under load, and (2) the state of charge of the second battery pack is greater than the state of charge of the first battery pack, increasing electric power to the rear electric motor of the electric mining machine to accommodate the load, wherein the load is associated with at least one of hauling material or climbing an inclined surface.

2. The method of claim 1 , wherein upon determining that the state of charge of the second battery pack is greater than the state of charge of the first battery pack, the method further comprising decreasing electric power to the front electric motor of the electric mining machine.

3. The method of claim 1 , further comprising:

upon determining that the state of charge of the first battery pack is greater than the state of charge of the second battery pack, increasing electric power to the front electric motor of the electric mining machine.

4. The method of claim 1 , wherein upon determining that the state of charge of the second battery pack is greater than the state of charge of the first battery pack, the method further comprising charging the first battery pack during regenerative braking.

5. The method of claim 1 , further comprising:

upon determining that the state of charge of the first battery pack is greater than the state of charge of the second battery pack, charging the second battery pack during regenerative braking.

6. The method of claim 1 , wherein the front axle and the rear axle are not mechanically linked.

7. The method of claim 1 , wherein the electric mining machine further comprises an auxiliary battery pack; and

wherein the auxiliary battery pack is configured to supply electric power to the rear electric motor and the front electric motor of the electric mining machine during replacement of a battery pack.

8. A power control system in an electric mining machine for providing electric power distribution, the power control system comprising:

a power system controller in communication with at least a first battery pack and a second battery pack of an electric mining machine;

the first battery pack configured to supply electric power to a front electric motor to drive a front axle of the electric mining machine;

the second battery pack configured to supply electric power to a rear electric motor to drive a rear axle of the electric mining machine; and

wherein the power system controller is configured to:

compare a state of charge of the first battery pack to a state of charge of the second battery pack; and

upon determining that (1) the electric mining machine is under load, and (2) the state of charge of the second battery pack is greater than the state of charge of the first battery pack, increase electric power to the rear electric motor of the electric mining machine to accommodate the load, wherein the load is associated with at least one of hauling material or climbing an inclined surface.

9. The power control system of claim 8 , wherein upon determining that the state of charge of the second battery pack is greater than the state of charge of the first battery pack, the power system controller is configured to decrease electric power to the front electric motor of the electric mining machine.

10. The power control system of claim 8 , wherein the power system controller is further configured to:

upon determining that the state of charge of the first battery pack is greater than the state of charge of the second battery pack, increase electric power to the front electric motor of the electric mining machine.

11. The power control system of claim 8 , wherein upon determining that the state of charge of the second battery pack is greater than the state of charge of the first battery pack, the power system controller is configured to charge the first battery pack during regenerative braking.

12. The power control system of claim 8 , wherein the power system controller is further configured to:

upon determining that the state of charge of the first battery pack is greater than the state of charge of the second battery pack, charge the second battery pack during regenerative braking.

13. The power control system of claim 8 , wherein the front axle and the rear axle are not mechanically linked.

14. The power control system of claim 8 , wherein the electric mining machine further comprises an auxiliary battery pack; and

wherein the power system controller is configured to control the auxiliary battery pack to supply electric power to the rear electric motor and the front electric motor of the electric mining machine during replacement of a battery pack.

15. An electric mining machine comprising:

a front electric motor configured to drive a front axle of the electric mining machine;

a rear electric motor configured to drive a rear axle of the electric mining machine;

a first battery pack configured to supply electric power to the front electric motor; a second battery pack configured to supply electric power to the rear electric motor; and

a power system controller in communication with at least the first battery pack, the front electric motor, the second battery pack, and the rear electric motor, wherein the power system controller is configured to:

compare a state of charge of the first battery pack to a state of charge of the second battery pack; and

upon determining that (1) the electric mining machine is under load, and (2) the state of charge of the second battery pack is greater than the state of charge of the first battery pack, increase electric power to the rear electric motor of the electric mining machine to accommodate the load, wherein the load is associated with at least one of hauling material or climbing an inclined surface.

16. The electric mining machine of claim 15 , wherein upon determining that the state of charge of the second battery pack is greater than the state of charge of the first battery pack, the power system controller is configured to decrease electric power to the front electric motor of the electric mining machine.

17. The electric mining machine of claim 15 , wherein the power system controller is further configured to:

upon determining that the state of charge of the first battery pack is greater than the state of charge of the second battery pack, increase electric power to the front electric motor of the electric mining machine.

18. The electric mining machine of claim 15 , wherein, during regenerative braking, the power system controller selects one of the first battery pack or the second battery pack for charging based on which of the first battery pack or the second battery pack has a lower state of charge.

19. The electric mining machine of claim 15 , wherein the front axle and the rear axle are not mechanically linked.

20. The electric mining machine of claim 15 , further comprising an auxiliary battery pack; and

wherein the power system controller is configured to control the auxiliary battery pack to supply electric power to the rear electric motor and the front electric motor of the electric mining machine during replacement of a battery pack.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Aug 9, 2024
From: ARTISAN VEHICLE SYSTEMS, INC.
To: SANDVIK MINING AND CONSTRUCTION OY
Reel/Frame 068523/0889 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2022
From: HUFF, BRIAN R.; HICKEY, KYLE; VOCHOSKA, CHRISTOPHER
To: ARTISAN VEHICLE SYSTEMS, INC.
Reel/Frame 060424/0527 →
Continuity (2)
Provisional Application 62727930 · Sep 6, 2018
Related Publication 20200156500A1 · May 21, 2020
Cited By (2)
US 12,668,113 US 12,691,743