Apparatus and method for managing battery system
US-9222985-B2 · Dec 29, 2015 · US
US10063072B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10063072-B2 |
| Application number | US-201415032883-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 1, 2014 |
| Priority date | Nov 29, 2013 |
| Publication date | Aug 28, 2018 |
| Grant date | Aug 28, 2018 |
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A battery module includes a lithium ion secondary battery and a control circuit. The control circuit includes a measurement unit which measures voltage, current, and the time of charge/discharge of the lithium ion secondary battery; an operation unit which calculates a capacity based on the voltage, the current, and the time and calculates a differential value dQ/dV by differentiating the capacity with a voltage; a threshold voltage setting unit which specifies a peak of a low capacity side of the differential value dQ/dV generated on the basis of a stage structure of graphite and sets a voltage at the peak to a threshold voltage; a cutoff voltage setting unit which sets a discharge cutoff voltage of the lithium ion secondary battery on the basis of the threshold voltage; and a charge/discharge control unit which controls charge/discharge of the lithium ion secondary battery on the basis of the discharge cutoff voltage.
Opening claim text (preview).
The invention claimed is: 1. A battery module, comprising: a lithium ion secondary battery which has a negative electrode mixture layer including a silicon-based active material and graphite on a surface of a negative electrode; and a control circuit which controls charge/discharge of the lithium ion secondary battery, wherein the control circuit includes a measurement unit which measures a voltage, a current, and a time of the charge/discharge of the lithium ion secondary battery, an operation unit which calculates a capacity Q of the lithium ion secondary battery on the basis of the voltage, the current, and the time and calculates a differential value dQ/dV by differentiating the capacity Q with the voltage V, a threshold voltage setting unit which specifies a peak of a low capacity side of the differential value dQ/dV generated on the basis of a stage structure of the graphite and sets a voltage at the peak to a threshold voltage, a cutoff voltage setting unit which sets a discharge cutoff voltage of the lithium ion secondary battery on the basis of the threshold voltage, and a charge/discharge control unit which controls the charge/discharge of the lithium ion secondary battery on the basis of the discharge cutoff voltage. 2. The battery module according to claim 1 , wherein the control circuit includes a storage unit in which a maximum value of a capacity difference of the capacity at the threshold voltage and the capacity at the discharge cutoff voltage is previously recorded, the operation unit calculates the capacity difference on the basis of a measurement result of the measurement unit, and the cutoff voltage setting unit sets the discharge cutoff voltage to a voltage corresponding to a capacity obtained by subtracting the maximum value from the capacity at the threshold voltage, when the calculated capacity difference is larger than the recorded maximum value. 3. The battery module according to claim 2 , wherein the maximum value is equal to or smaller than 20% of a capacity based on the silicon-based active material. 4. The battery module according to claim 3 , wherein the silicon-based active material is silicon oxide and when a sum of mass of the silicon oxide and the graphite included in the negative electrode mixture layer is set to 100 wt %, the negative electrode mixture layer includes the silicon oxide at a ratio of 2 wt % to 65 wt %. 5. The battery module according to claim 4 , wherein the negative electrode mixture layer includes the silicon oxide at a ratio of 10 wt % or less. 6. A battery pack, comprising: the battery module according to any one of claims 1 to 5 ; and a plurality of lithium ion secondary batteries. 7. The battery pack according to claim 1 , further comprising: cell controllers each of which controls each of the lithium ion secondary batteries, wherein the charge/discharge control unit is provided in each of the cell controllers.
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