Selection method for regenerative battery in battery pack
A technology for regenerating batteries and battery packs, applied in the direction of measuring electricity, measuring electrical variables, measuring devices, etc., can solve the problems of damaged battery pack performance, high cost, and complicated detection devices, so as to reduce battery internal resistance and restore battery capacity. , the effect of accurate testing
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Embodiment 1
[0036] The operation method of the battery pack, including the following selection and regeneration process, after the regeneration process, the test work of the battery pack is carried out to obtain the test data:
[0037] 1) Charge the single battery with 5mA to the first cut-off voltage of 3.0V; charge with 12mA to the second cut-off voltage of 4.0V; during the charging process, measure the SOC (%) of the battery synchronously, and perform time normalization on the increase of SOC to obtain the SOC increase rate dΔSOC+ / dΔt;
[0038] 2) Discharge at 20mA to the third cut-off voltage of 2.5V; during the discharge process, measure the SOC (%) of the battery synchronously, normalize the SOC reduction with time, and obtain the SOC decline rate dΔSOC- / dΔt;
[0039] 3), taking the average value of the obtained SOC increase rate and / or SOC decrease rate of each single battery as a reference value;
[0040] 4), use the battery whose SOC increase rate and / or SOC decrease rate is hig...
Embodiment 2
[0045] The operation method of the battery pack, including the following selection and regeneration process, after the regeneration process, the test work of the battery pack is carried out to obtain the test data:
[0046] 1) Charge the single battery with 8mA to the first cut-off voltage of 3.3V; charge with 16mA to the second cut-off voltage of 4.35V; during the charging process, measure the SOC (%) of the battery synchronously, and perform time normalization on the increase of SOC to obtain the SOC increase rate dΔSOC+ / dΔt;
[0047] 2) Discharge at 26mA to the third cut-off voltage of 2.6V; during the discharge process, measure the SOC (%) of the battery synchronously, normalize the SOC reduction with time, and obtain the SOC decline rate dΔSOC- / dΔt;
[0048] 3), taking the average value of the obtained SOC increase rate and / or SOC decrease rate of each single battery as a reference value;
[0049] 4), use the battery whose SOC increase rate and / or SOC decrease rate is hi...
Embodiment 3
[0054] The operation method of the battery pack, including the following selection and regeneration process, after the regeneration process, the test work of the battery pack is carried out to obtain the test data:
[0055] 1) Charge the single battery with 10mA to the first cut-off voltage of 3.6V; charge with 18mA to the second cut-off voltage of 4.5V; during the charging process, measure the SOC (%) of the battery synchronously, and perform time normalization on the SOC increase to obtain the SOC increase rate dΔSOC+ / dΔt;
[0056] 2) Discharge at 28mA C to the third cut-off voltage of 2.8V; during the discharge process, measure the battery SOC (%) synchronously, and perform time normalization on the SOC reduction to obtain the SOC decline rate dΔSOC- / dΔt;
[0057] 3), taking the average value of the obtained SOC increase rate and / or SOC decrease rate of each single battery as a reference value;
[0058] 4), use the battery whose SOC increase rate and / or SOC decrease rate i...
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