Internal heating method suitable for power battery pack
A power battery pack, power battery technology, applied in the direction of secondary batteries, secondary battery repair/maintenance, circuits, etc., can solve problems such as uneven preheating, and achieve the effect of uniform heating
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specific Embodiment approach 1
[0019] Specific embodiment one: the following combination figure 1 and figure 2 Illustrating this embodiment, an internal heating method suitable for a power battery pack described in this embodiment, the power battery pack described in the method includes an even number of power batteries, and each two groups of power batteries is a self-heating unit, The charging and discharging signal terminals of one group of power batteries of each heating unit are connected to the signal input and output terminals of one side of the bidirectional DC / DC converter 2 , and the charging and discharging signal terminals of the other group of power batteries are connected to the other side of the bidirectional DC / DC converter 2 . side signal input and output;
[0020] No. 1 sampling circuit 1 and No. 2 sampling circuit 3 are respectively used to collect the temperature, terminal voltage, internal current of the power battery and the state of charge of the power battery of the two groups of p...
specific Embodiment approach 2
[0028] Specific embodiment two: the following combination image 3 This embodiment is described. This embodiment further describes an internal heating method suitable for a power battery pack described in Embodiment 1. The first-order Thevenin equivalent circuit model described in Step 3 includes an ohmic internal resistance R 0 , polarization resistance R 1 , polarization capacitance C 1 and an open-circuit equivalent voltage source U OC ;
[0029] Ohmic resistance R 0 One end is connected to the positive pole of the charging power supply, and the ohmic internal resistance R 0 The other end of the polarized capacitor C is also connected 1 one end and polarization resistance R 1 one end of the polarized capacitor C 1 The other end is simultaneously connected with the polarization resistor R 1 The other end of the open-circuit equivalent voltage source U OC positive, open-circuit equivalent voltage source U OC The negative pole is connected to the negative pole of the...
specific Embodiment approach 3
[0030] Embodiment 3: This embodiment further describes an internal heating method suitable for power battery packs described in Embodiment 2. The formula of the first-order Thevenin equivalent circuit model described in Step 3 is:
[0031]
[0032] where R 0 is the ohmic internal resistance, R 1 is the polarization internal resistance, C 1 is the polarized capacitance, U OC is the open-circuit voltage of the lithium-ion battery, U is the terminal voltage of the lithium-ion battery, and s is the complex frequency.
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