Diagnosis method of secondary battery, charging and discharging control method, diagnosis apparatus, management system, and non-transitory storage medium
US-2023366939-A1 · Nov 16, 2023 · US
US12306258B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12306258-B2 |
| Application number | US-202318183953-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 15, 2023 |
| Priority date | Mar 18, 2022 |
| Publication date | May 20, 2025 |
| Grant date | May 20, 2025 |
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An SBM measures a voltage of a battery, detects a voltage feature quantity, and transmits the voltage feature quantity to a BMU. The BMU measures a current of the battery, detects a current feature quantity, obtains the voltage feature quantity transmitted from the transmission unit, and calculates an impedance of the battery based on the current feature quantity and the voltage feature quantity received within a predetermined period from a time at which the current feature quantity is obtained.
Opening claim text (preview).
What is claimed is: 1. A calculation device for calculating an impedance of a battery, the calculation device comprising a first device and a second device, wherein the first device measures a first parameter that is one of a current of the battery and a voltage of the battery, the first device detects a first feature quantity that is a feature quantity of the first parameter, the first device transmits the first feature quantity to the second device, the second device measures a second parameter that is the other of the current and the voltage, the second device detects a second feature quantity that is a feature quantity of the second parameter, the second device obtains the first feature quantity transmitted from the first device, and the second device calculates the impedance based on the first feature quantity and the second feature quantity, the first feature quantity being received within a predetermined period from a time at which the second feature quantity is obtained, wherein the first feature quantity includes a fluctuation quantity of the first parameter, the second feature quantity includes a fluctuation quantity of the second parameter, the fluctuation quantity of the first parameter includes a fluctuation quantity that is more than or equal to a first predetermined quantity, and the fluctuation quantity of the second parameter includes a fluctuation quantity that is more than or equal to a second predetermined quantity. 2. The calculation device according to claim 1 , wherein the first feature quantity includes a peak of the first parameter, and the second feature quantity includes a peak of the second parameter. 3. A calculation device for calculating an impedance of a battery, the calculation device comprising a first device and a second device, wherein the first device measures a first parameter that is one of a current of the battery and a voltage of the battery, the first device detects a first feature quantity that is a feature quantity of the first parameter, the first device transmits the first feature quantity to the second device, the second device measures a second parameter that is the other of the current and the voltage, the second device detects a second feature quantity that is a feature quantity of the second parameter, the second device obtains the first feature quantity transmitted from the first device, and the second device calculates the impedance based on the first feature quantity and the second feature quantity, the first feature quantity being received within a predetermined period from a time at which the second feature quantity is obtained, wherein the first feature quantity includes a fluctuation quantity of the first parameter, the second feature quantity includes a fluctuation quantity of the second parameter, the first parameter is the voltage of the battery, the second parameter is the current of the battery, the fluctuation quantity of the first parameter includes a fluctuation quantity that is more than or equal to a first predetermined quantity, and the fluctuation quantity of the second parameter includes a fluctuation quantity of the current value when a value of the current of the battery crosses zero. 4. The calculation device according to claim 3 , wherein the first feature quantity includes a peak of the first parameter, and the second feature quantity includes a peak of the second parameter. 5. A calculation device for calculating an impedance of a battery, the calculation device comprising a first device and a second device, wherein the first device measures a first parameter that is one of a current of the battery and a voltage of the battery, the first device detects a first feature quantity that is a feature quantity of the first parameter, the first device transmits the first feature quantity to the second device, the second device measures a second parameter that is the other of the current and the voltage, the second device detects a second feature quantity that is a feature quantity of the second parameter, the second device obtains the first feature quantity transmitted from the first device, and the second device calculates the impedance based on the first feature quantity and the second feature quantity, the first feature quantity being received within a predetermined period from a time at which the second feature quantity is obtained, wherein the first feature quantity includes a peak of the first parameter, the second feature quantity includes a peak of the second parameter, the first parameter is the voltage of the battery, the second parameter is the current of the battery, the first feature quantity includes a fluctuation quantity of a difference value between a value of the voltage of the battery and an OCV (Open Circuit Voltage) of the battery when the difference value crosses zero, and the second feature quantity includes a fluctuation quantity of a value of the current when the value of the current of the battery crosses zero. 6. The calculation device according to claim 5 , wherein the first feature quantity includes a fluctuation quantity of the first parameter, and the second feature quantity includes a fluctuation quantity of the second parameter.
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