IP Library Granted Patent US 10,263,436
Granted Patent B2
US 10,263,436 · App. 14/678,074 · Granted Apr 16, 2019

Electrical energy storage unit and control system and applications thereof

Inventors: Virgil Lee Beaston (Tualatin, OR); Yunhua Gao (Dongguan, CN)
Assignee: Powin Energy Corporation
H02J7/0021H02J7/0014H02J7/0019Y02T10/7055
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Quick Facts
Patent No.
US 10,263,436
App. No.
14/678,074
Granted
Apr 16, 2019
Kind
B2
Abstract

An electrical energy storage unit and control system, and applications thereof. In an embodiment, the electrical energy storage unit includes a battery system controller and battery packs. Each battery pack has battery cells, a battery pack controller that monitors the cells, a battery pack cell balancer that adjusts the amount of energy stored in the cells, and a battery pack charger. The battery pack controller operates the battery pack cell balancer and the battery pack charger to control the state-of-charge of the cells. In an embodiment, the cells are lithium ion battery cells.

Claims (64)

1. A battery pack with an integrated battery management system, the battery pack comprising:

a battery module including a plurality of battery cells;

a balancing charger implemented on a circuit board disposed in the battery pack and comprising a power supply, the balancing charger configured to add energy to the battery module;

a discharger configured to discharge energy from the battery module; and

a battery pack controller configured to receive a target voltage and control the balancing charger and the discharger to adjust a voltage of the battery module toward the target voltage by at least:

determine whether a recalibration flag of the battery pack is set;

in response to determining that the recalibration flag of the battery pack is set:

instructing the balancing charger to add energy to the battery module at a first charging current in response to determining that the voltage of each of the plurality of battery cells is outside a target voltage range;

instructing the balancing charger to add energy to the battery module at a reduced charging current in response to determining that the voltage of one of the plurality of battery cells is within the target voltage range;

instructing the discharger to discharge energy from each cell of the plurality of battery cells that exceeds the target voltage range; and

instructing the balancing charger to stop adding energy and the discharger to stop discharging energy in response to determining that the voltage of each of the plurality of battery cells is within the target voltage range,

wherein the recalibration flag is set in response to determining that one of the plurality of battery cells is below a balancing voltage range and one of the plurality of battery cells exceeds the balancing voltage range, and wherein the target voltage falls within the target voltage range, and the target voltage range falls within the balancing voltage range.

2. The battery pack of claim 1 , wherein the discharger is a resistor coupled to the battery module.

3. The battery pack of claim 1 , wherein the plurality of battery cells are cylindrical cells, prismatic cells, or pouch cells.

4. The battery pack of claim 1 , wherein the plurality of battery cells are 18650 lithium-ion cells.

5. The battery pack of claim 1 , wherein the battery pack controller is further configured to determine an amount of energy added to the battery module based on the first charging current, the reduced charging current, and an amount of time the balancing charger is operating.

6. The battery pack of claim 1 , wherein the battery pack controller is further configured to calculate an average voltage of the battery pack and report the average voltage to an external device.

7. The battery pack of claim 1 , further comprising:

another battery module comprising another plurality of battery cells; and

another discharger configured to discharge energy from the another battery module,

wherein the balancing charger is further configured to add energy to the another battery module and the battery pack controller is further configured to control the balancing charger and the another discharger to adjust a voltage of the another battery module toward the target voltage.

8. The battery pack of claim 1 , wherein a lower threshold and an upper threshold of the balancing voltage range are dynamically determined based on the target voltage.

9. A method of balancing a battery pack with an integrated battery management system, the method comprising:

receiving a target voltage by a battery pack controller disposed in the battery pack;

measuring a voltage for each of a plurality of battery cells in the battery pack;

balancing the battery pack using a balancing charger and a discharger implemented on one or more circuit boards disposed in the battery pack by at least:

determining whether a recalibration flag of the battery pack is set;

in response to determining that the recalibration flag of the battery pack is set:

instructing the balancing charger to add energy to the plurality of battery cells at a first charging current in response to determining that the voltage of each of the plurality of battery cells is outside a target voltage range;

instructing the balancing charger to add energy to the plurality of battery cells at a reduced charging current in response to determining that the voltage of one of the plurality of battery cells is within the target voltage range;

instructing the discharger to discharge energy from each cell of the plurality of battery cells that exceeds the target voltage range; and

instructing the balancing charger to stop adding energy and the discharger to stop discharging energy in response to determining that the voltage of each of the plurality of battery cells is within the target voltage range,

wherein the recalibration flag is set in response to determining that one of the plurality of battery cells is below a balancing voltage range and one of the plurality of battery cells exceeds the balancing voltage range, wherein the target voltage falls within the target voltage range, and the target voltage range falls within the balancing voltage range, and

wherein the balancing charger includes a power supply.

10. The method of claim 9 , wherein the balancing comprises:

discharging energy from a battery cell of the plurality of battery cells in response to determining that the voltage of the battery cell is greater than an upper threshold, wherein the upper threshold is greater than the target voltage and within the balancing voltage range.

11. The method of claim 9 , wherein the balancing comprises:

adding energy to the plurality of battery cells in response to determining that the voltage of at least one battery cell of the plurality of battery cells is below a lower threshold, wherein the lower threshold is less than the target voltage and within the balancing voltage range.

12. The method of claim 9 , further comprising:

determining an amount of energy added to the battery module based on the first charging current, the reduced charging current, and an amount of time the balancing charger is operating.

13. The method of claim 9 , further comprising:

calculating the balancing voltage range and the target voltage range using the target voltage.

14. The method of claim 9 , wherein a lower threshold and an upper threshold of the balancing voltage range are dynamically determined based on the target voltage.

15. A non-transitory computer readable storage device having computer readable instructions stored thereon, execution of which by a battery pack controller disposed in a battery pack, causes the battery pack controller to perform operations comprising:

receiving a target voltage;

measuring a voltage for each of a plurality of battery cells in the battery pack;

balancing the battery pack using a balancing charger and a discharger implemented on one or more circuit boards disposed in the battery pack by:

determining whether a recalibration flag of the battery pack is set;

in response to determining that the recalibration flag of the battery pack is set:

instructing the balancing charger to add energy to the plurality of battery cells at a first charging current in response to determining that the voltage of each of the plurality of battery cells is outside a target voltage range;

instructing the balancing charger to add energy to the plurality of battery cells at a reduced charging current in response to determining that the voltage of one of the plurality of battery cells is within the target voltage range;

instructing the discharger to discharge energy from each cell of the plurality of battery cells that exceeds the target voltage range; and

instructing the balancing charger to stop adding energy and the discharger to stop discharging energy in response to determining that the voltage of each of the plurality of battery cells is within the target voltage range,

wherein the recalibration flag is set in response to determining that one of the plurality of battery cells is below a balancing voltage range and one of the plurality of battery cells exceeds the balancing voltage range, wherein the target voltage falls within the target voltage range, and the target voltage range falls within the balancing voltage range, and

wherein the balancing charger includes a power supply.

16. The non-transitory computer readable storage device of claim 15 , wherein the balancing comprises:

instructing the discharger to discharge energy from a battery cell of the plurality of battery cells in response to determining that the voltage of the battery cell is greater than an upper threshold, wherein the upper threshold is greater than the target voltage and within the balancing voltage range.

17. The non-transitory computer readable storage device of claim 15 , wherein the balancing comprises:

instructing the balancing charger to add energy to the plurality of battery cells in response to determining that the voltage of at least one battery cell of the plurality of battery cells is below a lower threshold, wherein the lower threshold is less than the target voltage and within the balancing voltage range.

18. The non-transitory computer readable storage device of claim 15 , the operations further comprising:

determining an amount of energy added to the battery module based on the first charging current, the reduced charging current, and an amount of time the balancing charger is operating.

19. The non-transitory computer readable storage device of claim 15 , the operations further comprising:

calculating the balancing voltage range and the target voltage range using the target voltage.

20. The non-transitory computer readable storage device of claim 15 , wherein a lower threshold and an upper threshold of the balancing voltage range are dynamically determined based on the target voltage.

Assignments (9)
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 →
Continuity (2)
Provisional Application 62066185 · Oct 20, 2014
Related Publication 20160111900A1 · Apr 21, 2016
Cited By (5)
US 12,472,839 US 12,476,294 US 12,567,614 US 12,633,486 US 12,712,215