IP Library › Granted Patent US 11,594,910
Granted Patent B2
US 11,594,910 · App. 16/769,889 · Granted Feb 28, 2023

Method for acquiring information of energy storage device, method for controlling charging, state estimation method, life estimation method, energy storage system manufacturing method, and energy storage device management apparatus

Inventor: Junpei Yokoyama (Kyoto, JP)
Assignee: GS Yuasa International Ltd.
H02J7/007188H02J7/005B60L53/16B60L53/62
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Quick Facts
Patent No.
US 11,594,910
App. No.
16/769,889
Granted
Feb 28, 2023
Kind
B2
Abstract

A method for acquiring information of a battery cell ( 11 ) includes a step (S 101 ) of acquiring information pertaining to performance recovery accompanying the suspension of charging/discharging of the battery cell ( 11 ). Control pertaining to the battery cell ( 11 ) and estimation of a state of the battery cell ( 11 ) can be appropriately performed according to a type of battery cell ( 11 ).

Claims (46)

1. A method for acquiring information of an energy storage device, comprising a step of acquiring information pertaining to performance recovery accompanying suspension of charging/discharging of the energy storage device,

wherein the information pertaining to the performance recovery includes information pertaining to a type of electrode assembly incorporated in the energy storage device.

2. The method for acquiring information of an energy storage device according to claim 1 , wherein the information pertaining to the performance recovery further includes information pertaining to a compression force that compresses the energy storage device.

3. A method for controlling charging of an energy storage device, comprising:

a step of acquiring information pertaining to performance recovery accompanying suspension of charging/discharging of the energy storage device;

a step of acquiring information pertaining to a suspension time until charging is started after the energy storage device is discharged based on the information pertaining to the performance recovery; and

a step of causing the battery charger to start charging the energy storage device after a suspension time, which corresponds to the information pertaining to the suspension time acquired in the step of acquiring, has elapsed since the energy storage device is discharged,

wherein the information pertaining to the performance recovery includes information pertaining to a compression force that compresses the energy storage device.

4. The method for controlling charging of an energy storage device according to claim 3 , further comprising changing the suspension time according to deterioration of the energy storage device.

5. An energy storage device state estimation method comprising:

the method for controlling charging of an energy storage device according to claim 3 ; and

a step of estimating a state of the energy storage device based on information pertaining to the performance recovery.

6. An energy storage device life estimation method comprising:

the method for controlling charging of an energy storage device according to claim 3 ; and

a step of estimating a life of the energy storage device based on information pertaining to the performance recovery.

7. An energy storage system manufacturing method comprising:

the method for controlling charging of an energy storage device according to claim 3 ; and

a step of designing an energy storage system based on information pertaining to the performance recovery and an assumed usage pattern of the energy storage device.

8. An energy storage device management apparatus comprising:

an acquisition unit that acquires information pertaining to performance recovery accompanying suspension of charging/discharging of the energy storage device; and

a control unit that performs at least one of charge control, discharge control, state estimation, and life estimation of the energy storage device based on the information pertaining to the performance recovery acquired by the acquisition unit,

wherein the information pertaining to the performance recovery includes information pertaining to a type of electrode assembly incorporated in the energy storage device.

9. The method for controlling charging of an energy storage device according to claim 3 , wherein

the information pertaining to the compression force includes information whether the energy storage device is exposed to high compression or low compression, and

the suspension time for charging the energy storage device exposed to the low compression is shorter than the suspension time for charging the energy storage device exposed to the high compression.

10. The method for controlling charging of an energy storage device according to claim 3 , wherein

the information pertaining to the performance recovery further includes information pertaining to a type of electrode assembly incorporated in the energy storage device.

11. The method for controlling charging of an energy storage device according to claim 10 , wherein

the information pertaining to the type of electrode assembly includes information whether the energy storage device incorporates a vertically wound electrode assembly or a horizontally wound electrode assembly, and

the suspension time for charging the energy storage device incorporating the horizontally wound electrode assembly is shorter than the suspension time for charging the energy storage device incorporating the vertically wound electrode assembly.

12. The method for controlling charging of an energy storage device according to claim 10 , wherein

the information pertaining to the type of electrode assembly includes information whether a mounting form of a current collector incorporated in the energy storage device is a one-sided type or a both-sided type, and

the suspension time for charging the energy storage device with the mounting form of the one-sided type is shorter than the suspension time for charging the energy storage device with the mounting form of the both-sided type.

13. The method for controlling charging of an energy storage device according to claim 10 , wherein

the information pertaining to the type of electrode assembly includes information whether the energy storage device incorporates either one of a vertically wound electrode assembly, a horizontally wound electrode assembly or a stack type electrode assembly in which a positive electrode plate and a negative electrode plate are stacked with a separator interposed between the positive electrode plate and the negative electrode plate,

the suspension time for charging the energy storage device incorporating the horizontally wound electrode assembly is shorter than the suspension time for charging the energy storage device incorporating the vertically wound electrode assembly, and

the suspension time for charging the energy storage device incorporating the stack type electrode assembly is shorter than the suspension time for charging the energy storage device incorporating the vertically wound electrode assembly and the suspension time for charging the energy storage device incorporating the horizontally wound electrode assembly.

14. The method for controlling charging of an energy storage device according to claim 3 , wherein

the information pertaining to the performance recovery further includes information pertaining to a negative electrode material,

the information pertaining to the negative electrode material includes information whether the negative electrode material of the energy storage device includes soft carbon or hard carbon, and

the suspension time for charging the energy storage device including the negative electrode material containing soft carbon is shorter than the suspension time for charging the energy storage device including the negative electrode material containing hard carbon.

15. The method for controlling charging of an energy storage device according to claim 3 , wherein

the information pertaining to the performance recovery further includes information pertaining to a negative electrode material,

the information pertaining to the negative electrode material includes information whether the negative electrode material of the energy storage device includes either one of soft carbon, hard carbon, or silicon,

the suspension time for charging the energy storage device including the negative electrode material containing soft carbon is shorter than the suspension time for charging the energy storage device including the negative electrode material containing hard carbon, and

the suspension time for charging the energy storage device including the negative electrode material containing silicon is shorter than the suspension time for charging the energy storage device including the negative electrode material containing hard carbon and the suspension time for charging the energy storage device including the negative electrode material containing soft carbon.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2020
From: YOKOYAMA, JUNPEI
To: GS YUASA INTERNATIONAL LTD.
Reel/Frame 054422/0589 →
Priority Claims (1)
JP JP2017-242899 · Dec 19, 2017 · national
Continuity (1)
Related Publication 20210184488A1 · Jun 17, 2021
Cited By (1)
US 12,199,464