IP Library › Granted Patent US 12,345,772
Granted Patent B2
US 12,345,772 · App. 18/266,284 · Granted Jul 1, 2025

Battery deterioration diagnosis device and battery deterioration diagnosis method

Inventors: Seiji Hirai (Tokyo, JP); Tomoki Takegami (Tokyo, JP)
Assignee: MITSUBISHI ELECTRIC CORPORATION
G01R31/392
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Quick Facts
Patent No.
US 12,345,772
App. No.
18/266,284
Granted
Jul 1, 2025
Kind
B2
Abstract

After the temperature of a battery rises to a predetermined diagnosis temperature, a charge/discharge control unit controls a charge/discharge circuit to charge or discharge the battery. A current-voltage detection unit detects current and voltage of the battery during a period in which the battery is charged or discharged. A differential voltage calculation unit calculates a differential voltage of the battery on the basis of the detected current and voltage. A deterioration state estimation unit estimates a deterioration state of the battery on the basis of a change in the calculated differential voltage.

Claims (40)

1. A battery deterioration diagnosis device that performs deterioration diagnosis of a battery, the device comprising:

charge/discharge circuitry to charge or discharge the battery;

charge/discharge control circuitry to control the charge/discharge circuitry in such a way that the battery is charged or discharged after a temperature of the battery rises to a predetermined diagnosis temperature;

a current-voltage detector to detect current and voltage of the battery during a period in which the battery is charged or discharged by the charge/discharge control circuitry;

differential voltage calculation circuitry to calculate a differential value of the voltage of the battery as a differential voltage on a basis of the current and voltage detected by the current-voltage detector; and

deterioration state estimation circuitry to estimate a deterioration state of the battery on a basis of a change in the differential voltage calculated by the differential voltage calculation circuitry, wherein

the higher the diagnosis temperature, the larger the current during charging or discharging of the battery by the charge/discharge control circuitry.

2. The battery deterioration diagnosis device according to claim 1 , wherein the deterioration state estimation circuitry estimates the deterioration state of the battery on a basis of a peak of a differential voltage curve representing the change in the differential voltage with respect to an electrical volume of the battery.

3. The battery deterioration diagnosis device according to claim 2 , further comprising electrical volume adjustment circuitry to adjust the electrical volume of the battery before charging or discharging the battery by the charge/discharge control circuitry in such a way that the differential voltage curve corresponds to an entire predetermined range of the electrical volume.

4. The battery deterioration diagnosis device according to claim 1 , further comprising condition determination circuitry to determine a time during which the battery is charged or discharged by the charge/discharge control circuitry as a charge/discharge time, and to determine the diagnosis temperature on a basis of the determined charge/discharge time, wherein

the charge/discharge control circuitry controls the charge/discharge circuitry on a basis of the charge/discharge time and the diagnosis temperature determined by the condition determination circuitry.

5. The battery deterioration diagnosis device according to claim 4 , wherein

the condition determination circuitry determines a current of the battery during charging or discharging of the battery by the charge/discharge control circuitry on a basis of the charge/discharge time, and determines the diagnosis temperature on a basis of the determined current, and

the charge/discharge control circuitry controls the charge/discharge circuitry on a basis of the charge/discharge time, the current, and the diagnosis temperature determined by the condition determination circuitry.

6. The battery deterioration diagnosis device according to claim 1 , further comprising a diagnosis schedule determination circuitry to determine a time period in which a next deterioration diagnosis should be performed on a basis of a usage history of the battery.

7. The battery deterioration diagnosis device according to claim 1 , further comprising:

temperature raising circuitry to raise the temperature of the battery;

a temperature detector to detect the temperature of the battery; and

temperature-raising control circuitry to control the temperature raising circuitry in such a way that the temperature of the battery rises to the diagnosis temperature on a basis of the temperature detected by the temperature detector.

8. The battery deterioration diagnosis device according to claim 7 , wherein the temperature raising circuitry raises the temperature of the battery by passing a current through the battery to generate heat by an internal resistance of the battery.

9. The battery deterioration diagnosis device according to claim 8 , wherein the temperature raising circuitry raises the temperature of the battery by passing a current containing a frequency component through the battery.

10. The battery deterioration diagnosis device according to claim 9 , wherein the temperature-raising control circuitry controls the temperature raising circuitry in such a way that the temperature of the battery rises to the diagnosis temperature after an electrical volume of the battery is adjusted to correspond to a magnitude of the current containing the frequency component.

11. The battery deterioration diagnosis device according to claim 7 , wherein

the battery includes a plurality of unit cells, and

the temperature raising circuitry is provided for only part of the plurality of unit cells.

12. A battery deterioration diagnosis method of performing deterioration diagnosis of a battery, the method comprising:

raising a temperature of the battery to a predetermined diagnosis temperature;

charging or discharging the battery after the temperature of the battery rises to the diagnosis temperature;

detecting current and voltage of the battery during a period in which the battery is charged or discharged;

calculating a differential value of the voltage of the battery as a differential voltage on a basis of the detected current and voltage; and

estimating a deterioration state of the battery on a basis of a change in the calculated differential voltage, wherein

the higher the diagnosis temperature, the larger the current during the charging or the discharging of the battery.

13. A battery deterioration diagnosis device that performs deterioration diagnosis of a battery, the device comprising:

charge/discharge circuitry to charge or discharge the battery;

charge/discharge control circuitry to control the charge/discharge circuitry in such a way that the battery is charged or discharged after a temperature of the battery rises to a predetermined diagnosis temperature;

a current-voltage detector to detect current and voltage of the battery during a period in which the battery is charged or discharged by the charge/discharge control circuitry;

differential voltage calculation circuitry to calculate a differential value of the voltage of the battery as a differential voltage on a basis of the current and voltage detected by the current-voltage detector;

deterioration state estimation circuitry to estimate a deterioration state of the battery on a basis of a change in the differential voltage calculated by the differential voltage calculation circuitry; and

condition determination circuitry to determine a time during which the battery is charged or discharged by the charge/discharge control circuitry as a charge/discharge time, and to determine the diagnosis temperature on a basis of the determined charge/discharge time, wherein

the charge/discharge control circuitry controls the charge/discharge circuitry on a basis of the charge/discharge time and the diagnosis temperature determined by the condition determination circuitry.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2023
From: HIRAI, SEIJI; TAKEGAMI, TOMOKI
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 063905/0015 →
Continuity (1)
Related Publication 20240044994A1 · Feb 8, 2024
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Cited By (1)
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