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Series battery pack charge balanced control method based on multi-coil transformer

A technology of series-connected battery packs and balanced control, applied in battery circuit devices, current collectors, electric vehicles, etc., can solve the problems of large number of control switches, large current and voltage stress, long balancing time, etc., and achieve cascade balancing control. Effect

Inactive Publication Date: 2015-09-16
XIAMEN UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, these non-energy-consuming equalization control methods, whether they are transfer or conversion, have a large number of control switches, large current and voltage stress, and complex control logic.
For equalization between adjacent batteries, when the number of batteries is large, the equalization time is long; using multiple secondary coil transformers or a single transformer can achieve one-to-many equalization and improve the equalization speed, but only one-way equalization control can not be achieved Direct balance control between many-to-many batteries, balance energy cannot realize many-to-many exchange according to their own needs

Method used

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  • Series battery pack charge balanced control method based on multi-coil transformer
  • Series battery pack charge balanced control method based on multi-coil transformer
  • Series battery pack charge balanced control method based on multi-coil transformer

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Embodiment Construction

[0029] The technical solutions of the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0030] According to the technical scheme and control method of the present invention, a Figure 8 In the circuit topology shown, TS-LFP40AHA lithium battery is used for the series battery pack; AVG microcontroller is used for the battery management system chip, which can be programmed to output PWM or control signals; the MOSFET switch tube is selected for low-voltage and high-current IRLL2705 tube, and the transformer is obtained according to the optimization The parameters are self-made, the magnetic core is made of ring ferrite 3C81 core suitable for high frequency, the size is TL42 / 26 / 13, and the coil is AWG25, with a total of 16 turns. The switching frequency is selected as 10kHz-50kHz. Strategy voltage U for equalization charging m The choice is to start from 3.9V, and then gradually increase to 4.2V...

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Abstract

The present invention discloses a battery pack balanced control method based on a multi-coil transformer. According to the method, a public energy storage reservoir is set up in the charge-discharge process of series batteries; batteries with relatively high capacities input energy into the energy storage reservoir; and batteries with relatively low capacities adsorb energy from the energy storage reservoir. The input or adsorbed energy is measured by difference between the capacities or voltages of the batteries and a reference value; the larger the difference between the capacities or the voltages of the batteries and the reference value is, the more the input or absorbed energy is; and conversely, the smaller the difference between the capacities or the voltages of the batteries and the reference value is, the less the input or absorbed energy is. The energy storage reservoir is a multi-input multi-output multi-port energy reservoir, can simultaneously adsorb energy from a plurality of batteries with high capacities and also can simultaneously output energy to a plurality of batteries with low energy. Energy balance among battery monomers in a series battery pack is realized in an energy converting and deploying manner.

Description

technical field [0001] The invention belongs to the technical field of charging and discharging of lithium batteries, and relates to a charging equalization control method of series battery packs based on a multi-coil transformer. Background technique [0002] There are many charging equalization control methods for series-connected battery packs, each with its own characteristics and processing methods, and suitable for different objects, most of which are suitable for small and medium-sized series-connected battery packs. From the above typical control methods, it is obvious that the non-energy-consuming equalization control technology is the future development direction; the energy conversion type will have higher equalization efficiency than the energy transfer type, and the balance control time will be shorter; two-way equalization faster than unidirectional. The energy involved in the balance is transferred or exchanged between adjacent batteries, such as using "flyin...

Claims

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Application Information

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IPC IPC(8): H02J7/00
Inventor 沈汉鑫
Owner XIAMEN UNIV OF TECH
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