A method for estimating soh of a battery management system
A battery management system, battery technology, applied in the direction of measuring electricity, measuring electrical variables, instruments, etc., can solve the problems of calculation distortion, unsynchronized voltage and current acquisition, etc., to achieve the effect of reducing workload
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Embodiment 1
[0024] refer to Figure 1-2 : A method for battery management system SOH estimation, comprising the following steps:
[0025] S1: The BMS is powered on; after the BMS is powered on, the power-on time is obtained, and then the open circuit voltage V of the battery is collected 0 , if the current power-on time and the last power-on time meet the interval T, then the first condition is met; if the open-circuit voltage or the adjacent voltage of the open-circuit voltage at this time is not recorded, then the second condition is met.
[0026] S2: Acquisition of monomer voltage and current; continuously collect the monomer voltage and current of the battery online, and store and back up the collected voltage and current as V 1 , V 2 …V n and I 1 , I 2 …I n , and its corresponding time is t 1 , t 2 ...t n , where the sampling time interval is always t, when n=9, the optimal value is obtained, and the estimation result is more accurate, at t 1 time record V 1 and I 1 , at ...
Embodiment 2
[0040] refer to Figure 1-2 , a method for battery management system SOH estimation, comprising the following implementation steps:
[0041] 1. The BMS is powered on; after the BMS is powered on, the power-on time is obtained, and then the open-circuit voltage of the battery is collected as a backup to V 0 =12V, if the current power-on time and the last power-on time meet the interval T, then condition 1 is satisfied, if the open circuit voltage or the adjacent voltage of the open circuit voltage at this time is not recorded, then condition 2 is satisfied.
[0042] 2. Acquisition of monomer voltage and current; continuously collect the monomer voltage and current of the battery online, and store and backup the collected voltage and current as V 1 =10V, V 2 =11V, V 3 =10.5V, V 4 =10V, V 5 =9.5V, V 6 =11V, V 7 =10V, V8 =11V, V 9 = 12V and I 1 =10mA, I 2 =11mA, I 3 =12mA, I 4 =10mA, I 5 =10mA, I 6 =12mA, I 7 =10mA, I 8 =10mA, I 9 =11mA, the corresponding time is ...
Embodiment 3
[0048] refer to Figure 1-2 , a method for battery management system SOH estimation, comprising the following implementation steps:
[0049] 1. The BMS is powered on; after the BMS is powered on, the power-on time is obtained, and then the open-circuit voltage of the battery is collected as a backup to V 0 =12V, if the current power-on time and the last power-on time meet the interval T, then the first condition is satisfied, if the open circuit voltage or the adjacent voltage of the open circuit voltage at this time is not recorded, then the second condition is satisfied.
[0050] 2. Acquisition of monomer voltage and current; continuously collect the monomer voltage and current of the battery online, and store and backup the collected voltage and current as V 1 =10V, V 2 =11V, V 3 =10.5V, V 4 =10V, V 5 =7V, V 6 =11V, V 7 =10V, V 8 =11V, V 9 = 12V and I 1 =10mA, I 2 =11mA, I 3 =12mA, I 4 =10mA, I 5 =10mA, I 6 =12mA, I 7 =10mA, I 8 =10mA, I 9 =11mA, the corre...
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