IP Library Granted Patent US 11,575,271
Granted Patent B2
US 11,575,271 · App. 17/012,041 · Granted Feb 7, 2023

SOC and SOH estimation methods of battery pack

Inventors: Yu Zhao (Luoyang, CN); Lei Wang (Luoyang, CN)
Assignee: CALB Co., Ltd.
H02J7/0048G01R31/367G01R31/388G01R31/392H02J7/005H02J7/00712
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,575,271
App. No.
17/012,041
Granted
Feb 7, 2023
Kind
B2
Abstract

The disclosure provides state-of-charge (SOC) and state-of-health (SOH) estimation methods of a battery pack. The SOC estimation method of the battery pack includes the following steps. First, a current resting time, a current battery temperature, and a current measured open circuit voltage corresponding to a current initial power-on time of the battery pack are obtained. Next, an SOC value corresponding to the current initial power-on time is determined according to the obtained current resting time, current battery temperature, current measured open circuit voltage, and a relational expression between an open circuit voltage, a resting time, a battery temperature, and an SOC value at predetermined different battery temperatures, so that the battery pack can be characterized according to the obtained SOC value.

Claims (68)

1. A state-of-charge (SOC) estimation method of a battery pack, comprising:

obtaining a current resting time, a current battery temperature, and a current measured open circuit voltage corresponding to a current initial power-on time of the battery pack; and

determining an SOC value corresponding to the current initial power-on time according to the current resting time, the current battery temperature, the current measured open circuit voltage, and a relational expression between an open circuit voltage, a resting time, a battery temperature, and an SOC value at predetermined different battery temperatures;

wherein the step of determining the SOC value corresponding to the current initial power-on time comprises:

determining an open circuit voltage closest to the current measured open circuit voltage according to the current resting time, the current battery temperature, and a relational expression of open circuit voltages corresponding to multiple different SOC values at the predetermined different battery temperatures; and

determining the SOC value corresponding to the current initial power-on time according to the determined open circuit voltage closest to the current measured open circuit voltage and its corresponding SOC value.

2. The SOC estimation method of the battery pack according to claim 1 , wherein the step of determining the open circuit voltage closest to the current measured open circuit voltage comprises:

determining the open circuit voltages corresponding to the multiple different SOC values at the current battery temperature according to the current resting time, the current battery temperature, and the relational expression of the open circuit voltages corresponding to the multiple different SOC values at the predetermined different battery temperatures;

determining a current maximum value and a current minimum value from among the determined open circuit voltages corresponding to the multiple different SOC values at the current battery temperature, wherein the current maximum value is a maximum value among the open circuit voltages corresponding to the multiple different SOC values that are less than the current measured open circuit voltage, and the current minimum value is a minimum value among the open circuit voltages corresponding to the multiple different SOC values that are greater than the current measured open circuit voltage; and

determining the current maximum value and the current minimum value as the open circuit voltage closest to the current measured open circuit voltage, and

the step of determining the SOC value corresponding to the current initial power-on time comprises:

determining a linear relational expression according to the current maximum value and its corresponding SOC value, and the current minimum value and its corresponding SOC value; and

determining the SOC value corresponding to the current initial power-on time according to the linear relational expression and the current measured open circuit voltage.

3. The SOC estimation method of the battery pack according to claim 2 , wherein a relational expression of an open circuit voltage corresponding to an m th SOC value in the relational expression of the open circuit voltages corresponding to the multiple different SOC values is as follows:

OCV( t ) −m =a −m log( t )+ b −m t+c −m

wherein a −m , b −m , and c −m represent constant coefficients, t represents the resting time, and OCV (t) −m represents the open circuit voltage corresponding to the m th SOC value at the resting time t.

4. The SOC estimation method of the battery pack according to claim 3 , wherein the step of determining the relational expression of the open circuit voltage corresponding to the m th SOC value comprises:

selecting a battery cell sample;

obtaining open circuit voltages and SOC values of the battery cell sample at different battery temperatures within different resting times of the battery cell sample; and

fitting the open circuit voltages and the SOC values of the battery cell sample obtained within the different resting times using a least square method to determine the relational expression of the open circuit voltage corresponding to the m th SOC value.

5. The SOC estimation method of the battery pack according to claim 1 , wherein a relational expression of an open circuit voltage corresponding to an m th SOC value in the relational expression of the open circuit voltages corresponding to the multiple different SOC values is as follows:

OCV( t ) −m =a −m log( t )+ b −m t+c −m

wherein a −m , b −m , and c −m represent constant coefficients, t represents the resting time, and OCV (t) −m represents the open circuit voltage corresponding to the m th SOC value at the resting time t.

6. The SOC estimation method of the battery pack according to claim 5 , wherein the step of determining the relational expression of the open circuit voltage corresponding to the m th SOC value comprises:

selecting a battery cell sample;

obtaining open circuit voltages and SOC values of the battery cell sample at different battery temperatures within different resting times of the battery cell sample; and

fitting the open circuit voltages and the SOC values of the battery cell sample obtained within the different resting times using a least square method to determine the relational expression of the open circuit voltage corresponding to the m th SOC value.

7. The SOC estimation method of the battery pack according to claim 2 , wherein after obtaining the current resting time, the current battery temperature, and the current measured open circuit voltage of the battery pack corresponding to the current initial power-on time, and before determining the open circuit voltages corresponding to the multiple different SOC values at the current battery temperature, the method further comprises:

determining whether the current resting time corresponding to the current initial power-on time is greater than a resting time feature value, and

the step of determining the open circuit voltages corresponding to the multiple different SOC values at the current battery temperature comprises:

determining the open circuit voltages corresponding to the multiple different SOC values at the current battery temperature when it is determined that the current resting time corresponding to the current initial power-on time is greater than the resting time feature value.

8. The SOC estimation method of the battery pack according to claim 1 , wherein the current battery temperature is a minimum value among current battery temperatures corresponding to each battery cell in the battery pack.

9. The SOC estimation method of the battery pack according to claim 1 , wherein the current battery temperature is a minimum value among current battery temperatures corresponding to each battery cells in the battery pack.

10. The SOC estimation method of the battery pack according to claim 2 , wherein the current battery temperature is a minimum value among current battery temperatures corresponding to each battery cells in the battery pack.

11. A state-of-health (SOH) estimation method of a battery pack, comprising:

obtaining a current resting time, a current battery temperature, and a current measured open circuit voltage corresponding to a current initial power-on time of the battery pack;

determining an SOC value corresponding to the current initial power-on time according to the current resting time, the current battery temperature, the current measured open circuit voltage, and a relational expression between an open circuit voltage, a resting time, a battery temperature, and an SOC value at predetermined different battery temperatures;

controlling the battery pack to charge starting from the current initial power-on time, and obtaining a corresponding actual charge capacity of the battery pack from the current initial power-on time to completion of a current charge, and a corresponding current battery temperature of the battery pack upon completion of the current charge;

determining a maximum charge capacity corresponding to the current battery temperature according to the current battery temperature and a pre-stored correspondence between the battery temperature and the maximum charge capacity of the battery pack upon completion of the current charge; and

determining a target SOH value of an SOH of the battery pack according to the actual charge capacity, the maximum charge capacity corresponding to the current battery temperature, and the determined SOC value corresponding to the current initial power-on time.

12. The SOH estimation method of the battery pack according to claim 11 , wherein a relational expression below is adopted to determine the target SOH value of the SOH of the battery pack:

S

O

H

0

=

Ccharge

Ccor

(

100

%

-

S

O

C

0

)

wherein SOH 0 represents the target SOH value of the SOH of the battery pack, Ccharge represents the actual charge capacity, Ccor represents the maximum charge capacity corresponding to the current battery temperature, and SOC 0 represents the determined SOC value corresponding to the current initial power-on time.

13. The SOH estimation method of the battery pack according to claim 11 , wherein after determining the SOC value corresponding to the current initial power-on time, and before controlling the battery pack to charge starting from the current initial power-on time, the method further comprises:

determining whether the SOC value is less than an SOC feature value, and

the step of controlling the battery pack to charge starting from the current initial power-on time comprises:

controlling the battery pack to charge starting from the current initial power-on time when it is determined that the SOC value is less than the SOC feature value.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2021
From: CHINA LITHIUM BATTERY TECHNOLOGY CO., LIMITED
To: CALB CO., LTD.
Reel/Frame 058453/0022 →
CHANGE OF NAME Recorded Dec 11, 2020
From: AVIC LITHIUM BATTERY (LUOYANG) CO., LTD
To: CHINA LITHIUM BATTERY TECHNOLOGY CO., LIMITED
Reel/Frame 054612/0326 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2020
From: ZHAO, YU; WANG, LEI
To: AVIC LITHIUM BATTERY (LUOYANG) CO., LTD
Reel/Frame 053740/0642 →
Priority Claims (1)
CN 201911349422.9 · Dec 24, 2019 · national
Continuity (1)
Related Publication 20210194260A1 · Jun 24, 2021