Method for estimating available discharge of battery and method for estimating available feedback power of battery
A discharge power and battery technology, applied in the direction of measuring electricity, measuring electrical variables, measuring devices, etc., can solve the problem that the available power of the battery cannot effectively exert the potential of the battery, and achieve the effect of improving the experience and improving the recycling efficiency.
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Embodiment 1
[0086] A method of estimating the regenerative power available to the battery, such as figure 1 shown, including the following steps:
[0087] Collect the SOC-continuous discharge power curve and SOC-peak discharge power curve at different temperatures through the battery experiment;
[0088] Use MATLAB / Simulink software to carry out SOC model and SOP at a given temperature, build SOC model and SOP model in MATLAB software, SOC model outputs SOC to SOP model for table lookup, and SOP model outputs discharge or feedback power to SOC for integral use , the two are jointly simulated to obtain the data results.
[0089] Calculate the discharge recovery energy and discharge warning energy of the battery;
[0090] The discharge recovery energy is the highest dischargeable energy of the battery required for continuous discharge power (if it is higher than this value, it will be discharged at the peak value), and the discharge warning energy is the minimum dischargeable energy of th...
Embodiment 2
[0139] A method of estimating the battery feedback power, where the feedback power is the switching value of the continuous feedback power and the peak feedback power, such as figure 2 shown, including the following steps:
[0140] S1. SOC-sustained discharge power curves and SOC-peak discharge power curves at different temperatures are collected through the PACK experiment;
[0141] S2. Use MATLAB / Simulink to build SOC models and SOP models and perform simulations to establish SOC-battery initial energy feedback curves at different temperatures;
[0142] FCapInit=Q max _ init ×TBCapInit=FBMaxPwr init × T;
[0143] In the formula: FBCapInit represents the initial energy that can be fed back by the battery, FBMaxPwr init Indicates the peak feedback power obtained through the SOC-peak feedback power curve at real-time temperature, and T indicates the duration of the peak feedback power.
[0144] S3. Calculate the feedback recovery energy and feedback warning energy of the...
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