Method for derating battery charging power and battery pack to which the method is applied
A method for derating a charge power of a battery, includes: obtaining altitude data of a vehicle; obtaining descent speed data of the vehicle; calculating, based on the altitude data and the descent speed data, a prediction value of an increase in a charging current of the battery equipped in the vehicle due to regenerative braking; and derating the charging power of the battery based on the calculated prediction value.
1 . A method for derating a charge power of a battery, the method comprising:
obtaining altitude data of a vehicle for a time segment;
obtaining descent speed data of the vehicle for the time segment;
calculating, based on the altitude data and the descent speed data, a prediction value of an increase in a charging current of the battery equipped in the vehicle due to regenerative braking by multiplying a regenerative braking current value by a descent driving distance for the time segment, the descent driving distance being calculated based on the descent speed data for the time segment and a driving time duration; and
derating the charging power of the battery based on the calculated prediction value.
2 . The method as claimed in claim 1 , wherein the obtaining of the altitude data of the vehicle comprises receiving the altitude data of the vehicle from a positioning system installed in the vehicle.
3 . The method as claimed in claim 1 , wherein the obtaining of the altitude data of the vehicle comprises receiving the altitude data of the vehicle from an altitude sensor embedded in the battery.
4 . The method as claimed in claim 1 , wherein the prediction value of the increase in the charging current is inversely proportional to a value of the descent speed data.
5 . The method as claimed in claim 1 , wherein the derating of the charging power of the battery based on the calculated prediction value comprises:
calculating a cumulative energy of a battery protection device connected to the battery using the calculated prediction value and a characteristic constant of the battery protection device; and
derating the charging power of the battery based on the calculated cumulative energy of the battery protection device.
6 . The method as claimed in claim 5 , wherein the calculating of the cumulative energy of the battery protection device comprises:
calculating the cumulative energy of the battery protection device based on the calculated prediction value, a heating characteristic constant of the battery protection device, a cooling characteristic constant of the battery protection device, and a preceding cumulative energy, and
wherein the calculated cumulative energy is a subsequent cumulative energy calculated after a time interval from a calculation of the preceding cumulative energy.
7 . The method as claimed in claim 5 , wherein the derating of the charging power of the battery based on the calculated cumulative energy of the battery protection device comprises:
derating the charging power of the battery by a proportion corresponding to a range relative to a protection limit energy of the battery protection device, if the calculated cumulative energy of the battery protection device falls within the range.
8 . The method as claimed in claim 7 , wherein the range relative to the protection limit energy of the battery protection device includes a plurality of different ranges of the protection limit energy of the battery protection device, and different proportions for derating the charging power of the battery are respectively determined for the plurality of different ranges.
9 . The method as claimed in claim 7 , wherein the derating of the charging power of the battery by the proportion corresponding to the range comprises, derating the charging power of the battery by 5%, if the calculated cumulative energy falls within a range of 60% or more but less than 70% of the protection limit energy of the battery protection device.
10 . The method as claimed in claim 7 , wherein the derating of the charging power of the battery by the proportion corresponding to the range comprises, derating the charging power of the battery by 15%, if the calculated cumulative energy falls within a range of 70% or more but less than 80% of the protection limit energy of the battery protection device.
11 . The method as claimed in claim 7 , wherein the derating of the charging power of the battery by the proportion corresponding to the range comprises, derating the charging power of the battery by 25%, if the calculated cumulative energy falls within a range of 80% or more but less than 90% of the protection limit energy of the battery protection device.
12 . The method as claimed in claim 7 , wherein the derating of the charging power of the battery by the proportion corresponding to the range comprises, derating the charging power of the battery by 35%, if the calculated cumulative energy falls within a range of 90% or more but less than 95% of the protection limit energy of the battery protection device.
13 . The method as claimed in claim 7 , wherein the derating of the charging power of the battery by the proportion corresponding to the range comprises, derating the charging power of the battery by 45%, if the calculated cumulative energy falls within a range of 95% or more of the protection limit energy of the battery protection device.
14 . The method as claimed in claim 5 , wherein the battery protection device comprises a contactor.
15 . A non-transitory computer-readable recording medium storing instructions that, when executed by one or more processors, cause the one or more processors to perform the method according to claim 1 .
16 . A battery pack comprising:
a battery assembly comprising a plurality of battery cells;
a battery protection device connected to the battery assembly; and
a battery management system comprising:
a measurement unit configured to measure altitude data of a vehicle for a time segment and descent speed data of the vehicle for the time segment;
a charge prediction unit configured to calculate a prediction value of an increase in a charging current of the battery assembly due to regenerative braking based on the altitude data and the descent speed data by multiplying a regenerative braking current value by a descent driving distance for the time segment, the descent driving distance being calculated based on the descent speed data and a driving time duration; and
a derating unit configured to derate a charging power of the battery assembly based on the calculated prediction value of the increase in the charging current.
17 . The battery pack as claimed in claim 16 , wherein the charge prediction unit is configured to calculate a cumulative energy of the battery protection device based on the calculated prediction value of the increase in the charging current, a heating characteristic constant of the battery protection device, a cooling characteristic constant of the battery protection device, and a preceding cumulative energy, and
wherein the calculated cumulative energy is a subsequent cumulative energy calculated after a time interval from a calculation of the preceding cumulative energy.
18 . The battery pack as claimed in claim 17 , wherein the derating unit is configured to derate the charging power of the battery assembly by a proportion corresponding to a range relative to a protection limit energy of the battery protection device, if the calculated cumulative energy falls within the range.
19 . The battery pack as claimed in claim 18 , wherein the range relative to the protection limit energy of the battery protection device comprises a plurality of different ranges of the protection limit energy of the battery protection device, and different proportions for derating the charging power of the battery assembly are respectively determined for the plurality of different ranges.
20 . The battery pack as claimed in claim 16 , wherein the battery protection device comprises a contactor.