CN105048579B - It is a kind of to solve the problems, such as between different battery packs the mutually method of discharge and recharge - Google Patents

It is a kind of to solve the problems, such as between different battery packs the mutually method of discharge and recharge Download PDF

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Publication number
CN105048579B
CN105048579B CN201510482135.0A CN201510482135A CN105048579B CN 105048579 B CN105048579 B CN 105048579B CN 201510482135 A CN201510482135 A CN 201510482135A CN 105048579 B CN105048579 B CN 105048579B
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oxide
metal
battery
semiconductor
discharge
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CN105048579A (en
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毛珂
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CHENGDU YUNENGTONG ENERGY DEVELOPMENT Co Ltd
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CHENGDU YUNENGTONG ENERGY DEVELOPMENT Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Abstract

Solves the problems, such as the mutually method of discharge and recharge, including battery pack charge step, battery power discharge step and protection step between different battery packs the invention discloses a kind of;In discharge process, control module by the electric current of current detection module and the voltage of battery to sampling:When control module detects the discharge current by current detection module, charging metal-oxide-semiconductor is placed in opening by control module;When control module detects that the voltage of battery reaches overdischarge thresholding, electric discharge metal-oxide-semiconductor is placed in off by control module;Until all electric discharge metal-oxide-semiconductors are closed, represent that all battery modules are discharged completion.The control charging metal-oxide-semiconductor and electric discharge metal-oxide-semiconductor method for opening and closing of the present invention solves the problems, such as that the battery modules of different type voltage grade are parallel with one another and can cause mutual discharge and recharge;And realize in all battery modules in the case of a bus bar circuit in parallel, each battery modules realize the total recycle process of charge and discharge.

Description

It is a kind of to solve the problems, such as between different battery packs the mutually method of discharge and recharge
Technical field
Solves the problems, such as between different battery packs the mutually method of discharge and recharge the present invention relates to a kind of.
Background technology
With flourishing for electronic technology, medium-sized, large-sized battery pack dosage is increasing.And in these battery packs Production, test are with that during use, will use many charging and discharging processes.
Existing charging equipment or discharge equipment have the following disadvantages:
1st, battery pack needs to use the battery modules of same model to carry out battery pack requirement used in parallel, i.e., in parallel each Cell voltage is identical, it is impossible to which complete different type, the battery modules of voltage class are carried out into input and output in parallel.Because in electricity Chi Zuzhong, what the difference between monomer was constantly present, by taking capacity as an example, its otherness never tends to disappear, but progressively dislikes Change.Same electric current is flowed through in battery pack, comparatively, the big person of capacity is always at shallow fill of low current and shallow put, tends to capacity and decline Slow down slow, life, and the small person of capacity is always at high current super-charge super-discharge, tends to capacity attenuation quickening, the lost of life, two Performance parameter difference is increasing between person, forms positive feedback characteristic, low capacity premature failure, organizes the lost of life.
2nd, the discharge and recharge step of battery pack is unable to reach the function of complete alternation so that the using trouble of battery pack.
The content of the invention
It is an object of the invention to overcome the deficiencies of the prior art and provide a kind of simple and easy, easy to operation, highly reliable Solve the problems, such as between different battery packs the mutually method of discharge and recharge, asking for complete alternation discharge and recharge can not be realized by solving prior art Topic.
The purpose of the present invention is achieved through the following technical solutions:One kind solves mutual charge and discharge between different battery packs The method of electric problem, including battery pack charge step, battery power discharge step and protection step;Described battery pack includes multiple Battery modules in parallel, described battery modules include the charging metal-oxide-semiconductor of series connection, electric discharge metal-oxide-semiconductor, current detection module, insurance Silk and battery, in addition to the control module being connected with charging metal-oxide-semiconductor, electric discharge metal-oxide-semiconductor, current detection module and battery;
Described battery power discharge step includes following sub-step:
S11:Before discharge process, all charging metal-oxide-semiconductors are closed, and all electric discharge metal-oxide-semiconductors are in and opened State is opened, all battery modules pass through the diodes in parallel of the course of discharge allowed inside the metal-oxide-semiconductor that charges;
S12:Start to discharge, voltage highest battery modules are discharged at first;Control module is to passing through current detecting mould The electric current of block is sampled, and also the voltage of battery is sampled:
(1)When control module detects the discharge current by current detection module, control module puts charging metal-oxide-semiconductor , will battery modules addition electric discharge sequence in parallel in opening;Until all charging metal-oxide-semiconductors are in opening, Realize all battery modules in parallel electric discharges;
(2)When control module detects that the voltage of battery reaches overdischarge thresholding, electric discharge metal-oxide-semiconductor is placed in pass by control module Closed state;Until all electric discharge metal-oxide-semiconductors are closed, represent that all battery modules are discharged completion;
Described battery pack charge step includes following sub-step:
S21:Before charging process, all charging metal-oxide-semiconductors are in opening, and all electric discharge metal-oxide-semiconductors, which are in, to close Closed state, all battery modules are all together in parallel by the diode in the charging direction allowed inside the metal-oxide-semiconductor that discharges;
S22:Start to charge up, charging current initially enters the minimum battery modules of voltage;Control module through overcurrent to examining The electric current for surveying module is sampled, and also the voltage of battery is sampled:
(1)When control module detects the charging current by current detection module, control module puts electric discharge metal-oxide-semiconductor , will battery modules addition charging sequence in parallel in opening;Until all electric discharge metal-oxide-semiconductors are in opening, Realize all battery modules in parallel chargings;
(2)When control module detects that the voltage of battery reaches overcharge thresholding, charging metal-oxide-semiconductor is placed in pass by control module Closed state;Until all charging metal-oxide-semiconductors are closed, represent that all battery modules bulk charges are completed;
Described protection step is:In battery pack charge step and battery power discharge step are carried out, if there is electric current mistake Big situation, fuse are disconnected automatically, and battery modules are protected.
Described current detection module includes a current sense resistor RSC.
Described battery modules are identical or different type voltage class battery modules.
The beneficial effects of the invention are as follows:
(1)The present invention passes through on the basis of not overcharging and only putting and controls charging metal-oxide-semiconductor and electric discharge metal-oxide-semiconductor method for opening and closing Mutual discharge and recharge can be caused by solving the problems, such as that multiple battery modules are parallel with one another, even complete different type voltage grade Battery modules parallel connection.
(2)The present invention realize all battery modules in a bus bar circuit in parallel, output it is only positive and negative In the case of both threads, the total recycle process of charge and discharge can be achieved in each battery modules:After the completion of charge step The open and-shut mode of charging metal-oxide-semiconductor and the metal-oxide-semiconductor that discharges is identical with the original state of discharge step, similarly after the completion of discharge step The open and-shut mode of charging metal-oxide-semiconductor and the metal-oxide-semiconductor that discharges is identical with the original state of charge step.
(3)Present invention additionally comprises a fuse for being used to protect battery modules, disconnect, have when electric current is excessive Security.
(4)The present invention is simple and easy, easy to operation, highly reliable.
Brief description of the drawings
Fig. 1 is the inventive method flow chart;
Fig. 2 is battery pack structure block diagram;
Fig. 3 is battery modules circuit diagram;
Fig. 4 completes equivalent circuit diagram for electric discharge;
Fig. 5 is charging complete equivalent circuit diagram.
Embodiment
Technical scheme is described in further detail below in conjunction with the accompanying drawings:As shown in figure 1, a kind of solve different batteries The method of mutual discharge and recharge problem between group, including battery pack charge step, battery power discharge step and protection step;Such as Fig. 2 Shown, described battery pack includes multiple battery modules in parallel, as shown in figure 3, described battery modules include filling for series connection Electric metal-oxide-semiconductor, electric discharge metal-oxide-semiconductor, current detection module, fuse and battery, include and charging metal-oxide-semiconductor, discharge metal-oxide-semiconductor, electric current The control module that detection module connects with battery;
Described battery power discharge step includes following sub-step:
S11:Before discharge process, all charging metal-oxide-semiconductors are closed, and all electric discharge metal-oxide-semiconductors are in and opened State is opened, all battery modules pass through the diodes in parallel of the course of discharge allowed inside the metal-oxide-semiconductor that charges;
S12:Start to discharge, due to the relation of voltage competition, voltage highest battery modules are discharged at first;Control mould Block also samples to being sampled by the electric current of current detection module to the voltage of battery:
(1)When control module detects the discharge current by current detection module, control module puts charging metal-oxide-semiconductor In opening, will the battery modules add sequence in parallel of discharging, the metal-oxide-semiconductor that avoids charging bears discharge current;Until all Charging metal-oxide-semiconductor be in opening, realize all battery modules in parallel electric discharges;
(2)When control module detects that the voltage of battery reaches overdischarge thresholding, electric discharge metal-oxide-semiconductor is placed in pass by control module Closed state, electric discharge metal-oxide-semiconductor now play not overdischarge;Until all electric discharge metal-oxide-semiconductors are closed, institute is represented Some battery modules are discharged completion, and equivalent circuit diagram is as shown in Figure 4.
After the completion of electric discharge, charging metal-oxide-semiconductor is in opening, and electric discharge metal-oxide-semiconductor is closed, charges and walk with battery Charging metal-oxide-semiconductor required for rapid is identical with the original state for the metal-oxide-semiconductor that discharges.
Described battery pack charge step includes following sub-step:
S21:Before charging process, all charging metal-oxide-semiconductors are in opening, and all electric discharge metal-oxide-semiconductors, which are in, to close Closed state, all battery modules are all together in parallel by the diode in the charging direction allowed inside the metal-oxide-semiconductor that discharges;
S22:Start to charge up, due to the relation of voltage competition, charging current initially enters the minimum battery modules of voltage;Control Molding block also samples to being sampled by the electric current of current detection module to the voltage of battery:
(1)When control module detects the charging current by current detection module, control module puts electric discharge metal-oxide-semiconductor , will battery modules addition charging sequence in parallel in opening;Until all electric discharge metal-oxide-semiconductors are in opening, Realize all battery modules in parallel chargings;
(2)When control module detects that the voltage of battery reaches overcharge thresholding, charging metal-oxide-semiconductor is placed in pass by control module Closed state, charging metal-oxide-semiconductor now play not overcharge;Until all charging metal-oxide-semiconductors are closed, institute is represented Some battery modules bulk charges are completed, and equivalent circuit diagram is as shown in Figure 5.
After charging complete, electric discharge metal-oxide-semiconductor is in opening, and charging metal-oxide-semiconductor is closed, walked with battery discharge Charging metal-oxide-semiconductor required for rapid is identical with the original state for the metal-oxide-semiconductor that discharges.
Described current detection module includes a current sense resistor RSC.
Described battery modules are identical or different type voltage class battery modules.
Described protection step is:In battery pack charge step and battery power discharge step are carried out, if there is electric current mistake Big situation, fuse are disconnected automatically, and battery modules are protected.

Claims (3)

1. a kind of solve the problems, such as between different battery packs the mutually method of discharge and recharge, it is characterised in that:Charge and walk including battery pack Suddenly, battery power discharge step and protection step;Described battery pack includes multiple battery modules in parallel, described battery modules Charging metal-oxide-semiconductor including series connection, electric discharge metal-oxide-semiconductor, current detection module, fuse and battery, include with the metal-oxide-semiconductor that charges, put The control module that electric metal-oxide-semiconductor, current detection module and battery connect;
Described battery power discharge step includes following sub-step:
S11:Before discharge process, all charging metal-oxide-semiconductors are closed, and all electric discharge metal-oxide-semiconductors are in opening state State, all battery modules pass through the diodes in parallel of the course of discharge allowed inside the metal-oxide-semiconductor that charges;
S12:Start to discharge, voltage highest battery modules are discharged at first;Control module is to by current detection module Electric current is sampled, and also the voltage of battery is sampled:
(1)When control module detects the discharge current by current detection module, charging metal-oxide-semiconductor is placed in out by control module State is opened, will battery modules addition electric discharge sequence in parallel;Until all charging metal-oxide-semiconductors are in opening, realize All battery modules in parallel electric discharges;
(2)When control module detects that the voltage of battery reaches overdischarge thresholding, electric discharge metal-oxide-semiconductor is placed in closing shape by control module State;Until all electric discharge metal-oxide-semiconductors are closed, represent that all battery modules are discharged completion;
Described battery pack charge step includes following sub-step:
S21:Before charging process, all charging metal-oxide-semiconductors are in opening, and all electric discharge metal-oxide-semiconductors, which are in, closes shape State, all battery modules are all together in parallel by the diode in the charging direction allowed inside the metal-oxide-semiconductor that discharges;
S22:Start to charge up, charging current initially enters the minimum battery modules of voltage;Control module is to passing through current detecting mould The electric current of block is sampled, and also the voltage of battery is sampled:
(1)When control module detects the charging current by current detection module, electric discharge metal-oxide-semiconductor is placed in out by control module State is opened, will battery modules addition charging sequence in parallel;Until all electric discharge metal-oxide-semiconductors are in opening, realize All battery modules in parallel chargings;
(2)When control module detects that the voltage of battery reaches overcharge thresholding, charging metal-oxide-semiconductor is placed in closing shape by control module State;Until all charging metal-oxide-semiconductors are closed, represent that all battery modules bulk charges are completed;
Described protection step is:In battery pack charge step and battery power discharge step are carried out, if it is excessive electric current occur Situation, fuse are disconnected automatically, and battery modules are protected;
After the completion of electric discharge, charging metal-oxide-semiconductor is in opening, and electric discharge metal-oxide-semiconductor is closed, with charge battery step institute The charging metal-oxide-semiconductor needed is identical with the original state for the metal-oxide-semiconductor that discharges;
After charging complete, electric discharge metal-oxide-semiconductor is in opening, and charging metal-oxide-semiconductor is closed, with battery discharge step institute The charging metal-oxide-semiconductor needed is identical with the original state for the metal-oxide-semiconductor that discharges.
A kind of solve the problems, such as that mutually the method for discharge and recharge, its feature exist between different battery packs 2. according to claim 1 In:Described current detection module includes a current sense resistor RSC.
A kind of solve the problems, such as that mutually the method for discharge and recharge, its feature exist between different battery packs 3. according to claim 1 In:Described battery modules are identical or different type voltage class battery modules.
CN201510482135.0A 2015-08-03 2015-08-03 It is a kind of to solve the problems, such as between different battery packs the mutually method of discharge and recharge Active CN105048579B (en)

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DE102016212557A1 (en) * 2016-07-11 2018-01-11 Robert Bosch Gmbh Battery system for supplying a voltage network with electrical energy
CN107154665B (en) * 2017-07-20 2024-01-02 山东圣阳电源股份有限公司 Charging and discharging combiner and power supply system
CN111354992A (en) * 2020-04-01 2020-06-30 深圳市超力源科技有限公司 Low-cost secondary lithium battery parallel use method

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CN1372364A (en) * 2001-02-20 2002-10-02 精工电子有限公司 Controller for electricity recharge/discharge

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JP3844063B2 (en) * 2002-02-01 2006-11-08 ミツミ電機株式会社 Secondary battery protection circuit

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1372364A (en) * 2001-02-20 2002-10-02 精工电子有限公司 Controller for electricity recharge/discharge

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Denomination of invention: A method for solving the problem of mutual charge and discharge between different battery packs

Effective date of registration: 20211228

Granted publication date: 20180316

Pledgee: Bank of China Limited Chengdu Wuhou sub branch

Pledgor: CHENGDU UNI-LINK ENERGY Co.,Ltd.

Registration number: Y2021510000314