IP Library › Granted Patent US 12,724,086
Granted Patent B2
US 12,724,086 · App. 18/711,877 · Granted Sep 1, 2026

Battery abnormality detection system, battery abnormality detection method, and battery abnormality detection program

Inventors: Shinya Nishikawa (Osaka, JP); Yusuke Itakura (Nara, JP); Mutsuhiko Takeda (Kyoto, JP); Takashi Iida (Hyogo, JP)
Assignee: Panasonic Intellectual Property Management Co., Ltd.
G01R31/396G01K1/026G01K3/14G01R31/3835G01R31/52
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Quick Facts
Patent No.
US 12,724,086
App. No.
18/711,877
Granted
Sep 1, 2026
Kind
B2
Abstract

A battery abnormality detection system includes the following constituents. A battery data acquisition unit acquires voltages of one of a plurality of cells and a plurality of parallel cell blocks in a battery pack and temperatures at a plurality of observation points respectively measured by a plurality of temperature sensors provided in the battery pack. A determination unit determines presence or absence of an abnormality in one of a specific cell and a specific parallel cell block, based on a transition of a voltage of the one of the specific cell and the specific parallel cell block in a predetermined period in the battery pack and on a difference between a temperature change at a first observation point and a temperature change at a second observation point in the predetermined period in the battery pack.

Claims (19)

1 . A battery abnormality detection system comprising:

an acquisition unit that acquires voltage of each of a plurality of cells or a plurality of parallel cell blocks in a battery pack and temperatures at a plurality of observation points respectively measured by a plurality of temperature sensors provided in the battery pack; and

a determination unit that determines whether a specific cell or a specific parallel cell block is an abnormality, based on a transition of a voltage of the each of the specific cell or the specific parallel cell block in a predetermined period in the battery pack and on a difference between a temperature change at a first observation point and a temperature change at a second observation point in the predetermined period in the battery pack, wherein

the determination unit determines whether an internal short-circuit is in the specific cell or the specific parallel cell block by estimating an internal short-circuit resistance value of the specific cell or the specific parallel cell block based on an integrated value of squares of voltages of the specific cell or the specific parallel cell block in the predetermined period in the battery pack and on a calorific value corresponding to a difference between a rise temperature at a first observation point and a rise temperature at a second observation point in the predetermined period in the battery pack.

2 . The battery abnormality detection system according to claim 1 , wherein

the temperature at the first observation point is a maximum temperature among the plurality of temperatures measured by the plurality of temperature sensors provided in the battery pack, and

the temperature at the second observation point is a minimum temperature among the plurality of temperatures measured by the plurality of temperature sensors provided in the battery pack.

3 . The battery abnormality detection system according to claim 1 , further comprising an external heat quantity estimation unit that estimates a heat quantity due to an external factor external to the battery pack, the heat quantity being applied to each of the first observation point and the second observation point, respectively,

wherein the external heat quantity estimation unit estimates the heat quantity to be applied to each of the first observation point and the second observation point based on one of a map and a function defining a relationship between a heat quantity to be applied to each of a plurality of observation points in the battery pack and an external condition and on measurement data of the external condition, and

the determination unit removes an influence of the heat quantity due to the external factor individually from the temperature change at the first observation point and the temperature change at the second observation point.

4 . The battery abnormality detection system according to claim 1 , wherein the determination unit determines whether the specific cell or the specific parallel cell block is an abnormality while the battery pack is charged or non-operational.

5 . A battery abnormality detection method comprising:

acquiring voltage of each of a plurality of cells or a plurality of parallel cell blocks in a battery pack and temperatures at a plurality of observation points respectively measured by a plurality of temperature sensors provided in the battery pack; and

determining whether a specific cell or a specific parallel cell block is an abnormality, based on a transition of a voltage of the specific cell or the specific parallel cell block in a predetermined period in the battery pack and on a difference between a temperature change at a first observation point and a temperature change at a second observation point in the predetermined period in the battery pack, wherein

the determining comprises determining whether an internal short-circuit is in the specific cell or the specific parallel cell block by estimating an internal short-circuit resistance value of the specific cell or the specific parallel cell block based on an integrated value of squares of voltages of the specific cell or the specific parallel cell block in the predetermined period in the battery pack and on a calorific value corresponding to a difference between a rise temperature at a first observation point and a rise temperature at a second observation point in the predetermined period in the battery pack.

6 . A non-transitory storage medium storing thereon a program designed to cause one or more processors to perform operations comprising:

acquiring voltage of each of a plurality of cells or a plurality of parallel cell blocks in a battery pack and temperatures at a plurality of observation points respectively measured by a plurality of temperature sensors provided in the battery pack; and

determining whether a specific cell or a specific parallel cell block is an abnormality, based on a transition of a voltage of the specific cell or the specific parallel cell block in a predetermined period in the battery pack and on a difference between a temperature change at a first observation point and a temperature change at a second observation point in the predetermined period in the battery pack, wherein

the determining comprises determining whether an internal short-circuit is in the specific cell or the specific parallel cell block by estimating an internal short-circuit resistance value of the specific cell or the specific parallel cell block based on an integrated value of squares of voltages of the specific cell or the specific parallel cell block in the predetermined period in the battery pack and on a calorific value corresponding to a difference between a rise temperature at a first observation point and a rise temperature at a second observation point in the predetermined period in the battery pack.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2024
From: NISHIKAWA, SHINYA; ITAKURA, YUSUKE; TAKEDA, MUTSUHIKO; IIDA, TAKASHI
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 068520/0990 →
Priority Claims (1)
JP 2021-193978 · Nov 30, 2021 · national
Continuity (1)
Related Publication 20250020731A1 · Jan 16, 2025
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