IP Library Granted Patent US 9,923,247
Granted Patent B2
US 9,923,247 · App. 14/851,482 · Granted Mar 20, 2018

Battery pack with integrated battery management system

Inventors: Virgil Lee Beaston (Tualatin, OR); Patrick Joseph Nystrom (Corbett, OR); Patten Atwood Emmons (King City, OR)
Assignee: Powin Energy Corporation
H01M10/4257H01M10/4207H01M10/0525H01M2010/4271
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Quick Facts
Patent No.
US 9,923,247
App. No.
14/851,482
Granted
Mar 20, 2018
Kind
B2
Abstract

Embodiments disclosed herein relate to a battery pack that may be used in an battery energy storage system. In an embodiment, the battery pack may include an integrated battery management system (BMS) having isolated, distributed, daisy-chained battery module controllers. The daisy-chained battery module controllers may be coupled to a battery pack controller, which may charge and/or discharge the battery pack using the battery modules controllers and a balancing charger.

Claims (38)

1. A battery pack comprising:

a plurality of battery modules;

a balancing charger configured to add energy to the plurality of battery modules; and

a battery pack controller coupled to a plurality of daisy-chained battery module controllers to form a communication network,

wherein each of the plurality of daisy-chained battery module controllers is mounted on one of the plurality of battery modules and is configured to remove energy from the battery module it is mounted on, and wherein each of the plurality of daisy-chained battery module controllers comprises:

a first terminal coupled to a positive terminal of the battery module that the battery module controller is mounted on;

a second terminal coupled to a negative terminal of the battery module that the battery module controller is mounted on; and

a shunt resistor configured to be selectively applied across the first and second terminals to discharge energy of the battery module that the battery module controller is mounted on.

2. The battery pack of claim 1 , wherein each of the plurality of daisy-chained battery module controllers further comprises a processor that is configured to measure a voltage of the battery module it is mounted on, and report the measured voltage to the battery pack controller.

3. The battery pack of claim 1 , wherein each of the plurality of daisy-chained battery module controllers further comprises a processor that is configured to measure a temperature of the battery module it is mounted on, and report the measured temperature to the battery pack controller.

4. The battery pack of claim 1 , wherein each of the plurality of daisy-chained battery module controllers further comprises:

a polarity protection circuit configured to protect the battery module controller in response to the first and second terminals being coupled to the negative and positive terminals of the battery module, respectively.

5. The battery pack of claim 1 , wherein each of the plurality of daisy-chained battery module controllers further comprises:

a fail-safe circuit configured to prevent the shunt resistor from discharging the battery module that the battery module controller is mounted on below a threshold energy level.

6. The battery pack of claim 1 , wherein each of the plurality of daisy-chained battery module controllers further comprises:

an isolation circuit configured to electrically isolate the battery module controller from the other components coupled to the battery module controller.

7. The battery pack of claim 1 , wherein each of the plurality of battery modules comprises a plurality of battery cells.

8. The battery pack of claim 7 , wherein the plurality of battery cells are cylindrical cells, prismatic cells, or pouch cells.

9. The battery pack of claim 8 , wherein the plurality of battery cells are 18650 lithium-ion cells.

10. A battery pack comprising:

a plurality of battery modules;

a balancing charger configured to add energy to the plurality of battery modules; and

a battery pack controller coupled to a plurality of daisy-chained battery module controllers to form a communication network,

wherein each of the plurality of daisy-chained battery module controllers is mounted on one of the plurality of battery modules and comprises:

a shunt resistor configured to discharge energy from the battery module that it is mounted on;

a processor configured to instruct the shunt resistor to discharge energy from the battery module that it is mounted on; and

a communication terminal configured to receive an instruction from the battery pack controller to discharge energy from the battery module that it is mounted on.

11. The battery pack of claim 10 , wherein each of the plurality of daisy-chained battery module controllers comprises a unique address in the communication network.

12. The battery pack of claim 11 , wherein each of the plurality of daisy-chained battery module controllers is configured to receive the message from the battery pack controller and to determine whether the message comprises its unique address.

13. The battery pack of claim 9 , wherein the battery pack controller is configured to poll the plurality of daisy-chained battery module controllers for a voltage measurement and a temperature measurement of the battery module that the battery module controller is mounted on.

14. The battery pack of claim 13 , wherein each of the plurality of battery module controllers is configured to measure a voltage and a temperature of the battery module it is mounted on, and to report the measured voltage and the measured temperature to the battery pack controller.

15. The battery pack of claim 10 , wherein each of the plurality of daisy-chained battery module controllers further comprises:

an isolation circuit configured to electrically isolate the battery module controller from the other components coupled to the battery module controller.

16. The battery pack of claim 10 , wherein each of the plurality of daisy-chained battery module controllers further comprises:

a fail-safe circuit disposed between the processor and the shunt switch and configured to prevent the shunt resistor from discharging the battery module that the battery module controller is mounted on below a threshold energy level.

17. The battery pack of claim 10 , wherein each of the plurality of battery modules comprises a plurality of battery cells.

18. The battery pack of claim 17 , wherein the plurality of battery cells are cylindrical cells, prismatic cells, or pouch cells.

19. The battery pack of claim 17 , wherein the plurality of battery cells are 18650 lithium-ion cells.

Assignments (10)
RELEASE OF SECURITY INTEREST Recorded Oct 10, 2025
From: POWIN, LLC, ET AL, DEBTORS, VIA U.S. BANKRUPTCY COURT, DISTRICT OF NEW JERSEY
To: FLEXGEN POWER SYSTEMS, LLC
Reel/Frame 072535/0800 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2025
From: POWIN, LLC
To: FLEXGEN POWER SYSTEMS, LLC
Reel/Frame 072946/0629 →
NOTICE OF SECURITY INTEREST IN INTELLECTUAL PROPERTY Recorded Oct 2, 2024
From: POWIN, LLC
To: GLAS USA LLC, AS COLLATERAL AGENT
Reel/Frame 069102/0539 →
RELEASE OF SECURITY INTEREST Recorded Oct 23, 2023
From: HSBC BANK USA, N.A., AS ADMINISTRATIVE AGENT
To: POWIN, LLC
Reel/Frame 065310/0290 →
RELEASE OF SECURITY INTEREST Recorded Jan 13, 2022
From: ARROYO ENERGY INVESTMENT PARTNERS LLC
To: POWIN ENERGY CORPORATION
Reel/Frame 058652/0252 →
SECURITY INTEREST Recorded Jan 3, 2022
From: POWIN, LLC
To: HSBC BANK USA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 058524/0848 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2021
From: POWIN ENERGY CORPORATION
To: POWIN, LLC
Reel/Frame 056024/0524 →
SECURITY INTEREST Recorded Oct 30, 2019
From: POWIN ENERGY CORPORATION
To: POWIN ENERGY FINANCE LLC; ARROYO ENERGY INVESTMENT PARTNERS LLC
Reel/Frame 050926/0048 →
SECURITY INTEREST Recorded Oct 28, 2019
From: POWIN ENERGY CORPORATION
To: ARROYO ENERGY INVESTMENT PARTNERS LLC
Reel/Frame 050840/0901 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2015
From: BEASTON, VIRGIL LEE; NYSTROM, PATRICK JOSEPH; EMMONS, PATTEN ATWOOD
To: POWIN ENERGY CORPORATION
Reel/Frame 036545/0305 →
Continuity (1)
Related Publication 20170077559A1 · Mar 16, 2017