CN105262184A - Quick charge and electricity-storage control method - Google Patents
Quick charge and electricity-storage control method Download PDFInfo
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- CN105262184A CN105262184A CN201510821939.9A CN201510821939A CN105262184A CN 105262184 A CN105262184 A CN 105262184A CN 201510821939 A CN201510821939 A CN 201510821939A CN 105262184 A CN105262184 A CN 105262184A
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- energy supply
- super capacitor
- electric capacity
- magnetic motivation
- charging
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- Charge And Discharge Circuits For Batteries Or The Like (AREA)
Abstract
The invention relates to a power supply charge and discharge system of a power system, in particular to a quick charge and electricity-storage control method. In a charge mode, a controller controls a relay coil, so that all energy supply capacitors are connected with a super capacitor in parallel; commercial power is converted into relatively high direct current to charge the super capacitor; and then the energy supply capacitors obtain sufficient charges from the super capacitor. In a discharge mode, the controller controls the relay coil, so that one energy supply capacitor and a magnetic motor are instantaneously closed once and are rapidly connected with the super capacitor again; the controller controls the next energy supply capacitor to supply energy to the magnetic motor at an interval of a time period; the time period is the time that the magnetic motor rotates a circle; and a control mode in the discharge mode is circulated according to the number of the energy supply capacitors. The power supply charge and discharge system has the advantages that the electric energy can be rapidly stored into a circuit; and a continuous rotation of the magnetic motor for a few of hours can be maintained.
Description
Technical field
The present invention relates to the power supply charge-discharge system of dynamical system, particularly electric control method is deposited in quick charge.
Background technology
Plug-in pure electric automobile is, by ground charger, electric energy is filled with vehicle-mounted electrokinetic cell energy-storage system, and vehicle make use of the electric energy be filled with and converts electric energy to kinetic energy and make vehicle operating.Prior art can not be accomplished enough large due to electric current during charging, therefore, whole charging process is often made to seem too slow, what have even needs a few hours, although the battery of power lithium battery or other kind possesses the characteristic sum ability of quick charge, but a lot of application is subject to the restriction of charging device moment high-power charging bottleneck, thus cannot complete whole charging process at short notice.
The maturation of super capacitor production technology, possibility is brought to the realization of novel power supply storage device, super capacitor is utilized now to carry out store electrical energy, although the time of charging greatly can be shortened, but because electric capacity nature determines, the time of capacitor discharge also quickly, even if the existing super capacitor just continuous discharging time of 5 ~ 10 minutes only, the rotation that so also only can continue 5 ~ 10 minutes for electric vehicle motor, inventor provide now a kind of magnetic motivation of cycle discontinuous power supply, magnetic motivation utilizes the moment repulsion of electromagnet to promote it and rotates; The time that sparks is about that magnetic motivation rotates 1/50 of the circle time used, and according to the electric capacity of continuous discharge in 5 minutes, maintenance magnetic motivation is rotated more than 3 hours by such mode energy supply.According to normal electrical motor-car speed, as long as electromagnet moment repulsion institute energy requirement can maintain magnetic motivation rotate a circle, so magnetic motivation just can rely on this interrupted energy supply to continue to rotate.The maintenance of magnetic motivation is rotated, and needs a complete charging to deposit electric control system to realize.
Summary of the invention
The object of this invention is to provide a kind of charging to electric capacity and deposit the method that Electricity Functional realizes automatically controlling, solve the time of super capacitor to magnetic motivation continued power shorter problem.
In order to solve the problem, electric control method is deposited in quick charge provided by the invention, the charging being applied in super capacitor is deposited in electric system, the circuit structure that electricity is deposited in charging comprises circuit charging end, super capacitor, energy supply electric capacity, relay, controller and magnetic motivation, described super capacitor is connected with circuit charging end with after energy supply Capacitance parallel connection, described energy supply electric capacity is multiple, wherein multiple energy supply Capacitance parallel connection is arranged, a relay is all arranged in series between described energy supply electric capacity and super capacitor, the contact of described relay switches between magnetic motivation and super capacitor, the coil of relay is under control of the controller, its rate-determining steps is as follows:
A, controller judge the mode of operation of electric capacity: charging or powering mode;
If b is judged as charge mode, controller control relay coil, energy supply electric capacity is all in parallel with super capacitor, and utilize civil power to convert the larger direct current of electric current to first to super capacitor charging, then energy supply electric capacity obtains sufficient charge amount from super capacitor;
If c is judged as discharge mode, controller control relay coil, by one of them energy supply electric capacity and magnetic motivation instantaneously closed once, to be again connected with super capacitor then rapidly.
D, spacing of controls a period of time, described a period of time was that magnetic motivation revolves the time used of turning around by next energy supply electric capacity to the energy supply of magnetic motivation;
E, controller are according to the quantity of energy supply electric capacity, and the action of step c and steps d is carried out in circulation, and the electric energy of magnetic motivation makes magnetic motivation continue to rotate in conjunction with the inertia of magnetic motivation.
Charging is deposited in electric system, and the capacitance group of energy supply electric capacity composition is also connected with storage battery, and when energy supply electric capacity is long-time not to magnetic motivation transmission of electric energy, control capacitance group is connected with storage battery by controller, realizes the charging to storage battery.Storage battery can carry out energy supply to other power consumption equipments.The input of controller is also connected with the transducer of the magnet steel head position detecting magnetic motivation,
In stepb, whether controller first has signal to judge to transducer, after only detecting that transducer has signal, then jumps to step c.Magnet steel head drives magnetic motivation position energy by initial small machine zero load.
Control method of the present invention is the coil by controller control relay, energy supply electric capacity carries out periodicity charging and discharging, the energy of charging is provided by super capacitor, the electric energy of releasing produces periodic repulsion in magnetic motivation, make magnetic motivation can under cycle repulsion and effect of inertia persistent movement, and repeatedly decomposed by the electric energy of energy supply electric capacity by super capacitor, and the energy that at every turn discharges of energy supply electric capacity provide the repulsion of needs just in time can to magnetic motivation.The time interval of closing relay coil is set in controller, changes the cycle of input electric power supply, realize the speed governing effect of magnetic motivation.
Embodiment
Embodiment 1
Electric control method is deposited in quick charge provided by the invention, the charging being applied in super capacitor is deposited in electric system, the circuit structure that electricity is deposited in charging comprises circuit charging end, super capacitor, energy supply electric capacity, relay, controller and magnetic motivation, described super capacitor is connected with circuit charging end with after energy supply Capacitance parallel connection, described energy supply electric capacity is multiple, wherein multiple energy supply Capacitance parallel connection is arranged, a relay is all arranged in series between described energy supply electric capacity and super capacitor, the contact of described relay switches between magnetic motivation and super capacitor, the coil of relay is under control of the controller, its rate-determining steps is as follows:
A, controller judge the mode of operation of electric capacity: charging or powering mode;
If b is judged as charge mode, controller control relay coil, energy supply electric capacity is all in parallel with super capacitor, and utilize civil power to convert the larger direct current of electric current to first to super capacitor charging, then energy supply electric capacity obtains sufficient charge amount from super capacitor;
If c is judged as discharge mode, controller control relay coil, by one of them energy supply electric capacity and magnetic motivation instantaneously closed once, to be again connected with super capacitor then rapidly.
D, spacing of controls a period of time, described a period of time was that magnetic motivation revolves the time used of turning around by next energy supply electric capacity to the energy supply of magnetic motivation;
E, controller are according to the quantity of energy supply electric capacity, and the action of step c and steps d is carried out in circulation, and the electric energy of magnetic motivation makes magnetic motivation continue to rotate in conjunction with the inertia of magnetic motivation.
Charging is deposited in electric system, and the capacitance group of energy supply electric capacity composition is also connected with storage battery, and when energy supply electric capacity is long-time not to magnetic motivation transmission of electric energy, control capacitance group is connected with storage battery by controller, realizes the charging to storage battery.Storage battery can carry out energy supply to other power consumption equipments.The input of controller is also connected with the transducer of the magnet steel head position detecting magnetic motivation,
In stepb, whether controller first has signal to judge to transducer, after only detecting that transducer has signal, then jumps to step c.Magnet steel head drives magnetic motivation position energy by initial small machine zero load.
Control method of the present invention is the coil by controller control relay, energy supply electric capacity carries out periodicity charging and discharging, the energy of charging is provided by super capacitor, the electric energy of releasing produces periodic repulsion in magnetic motivation, make magnetic motivation can under cycle repulsion and effect of inertia persistent movement, and repeatedly decomposed by the electric energy of energy supply electric capacity by super capacitor, and the energy that at every turn discharges of energy supply electric capacity provide the repulsion of needs just in time can to magnetic motivation.The time interval of closing relay coil is set in controller, changes the cycle of input electric power supply, realize the speed governing effect of magnetic motivation.
Claims (1)
1. electric control method is deposited in a quick charge, the charging being applied in super capacitor is deposited in electric system, the circuit structure that electricity is deposited in charging comprises circuit charging end, super capacitor, energy supply electric capacity, relay, controller and magnetic motivation, described super capacitor is connected with circuit charging end with after energy supply Capacitance parallel connection, described energy supply electric capacity is multiple, wherein multiple energy supply Capacitance parallel connection is arranged, a relay is all arranged in series between described energy supply electric capacity and super capacitor, the contact of described relay switches between magnetic motivation and super capacitor, the coil of relay is under control of the controller, its rate-determining steps is as follows:
A, controller judge the mode of operation of electric capacity: charging or powering mode;
If b is judged as charge mode, controller control relay coil, energy supply electric capacity is all in parallel with super capacitor, and utilize civil power to convert the larger direct current of electric current to first to super capacitor charging, then energy supply electric capacity obtains sufficient charge amount from super capacitor;
If c is judged as discharge mode, controller control relay coil, by one of them energy supply electric capacity and magnetic motivation instantaneously closed once, to be again connected with super capacitor then rapidly;
D, spacing of controls a period of time, described a period of time was that magnetic motivation revolves the time used of turning around by next energy supply electric capacity to the energy supply of magnetic motivation;
E, controller are according to the quantity of energy supply electric capacity, and the action of step c and steps d is carried out in circulation, and the electric energy of magnetic motivation makes magnetic motivation continue to rotate in conjunction with the inertia of magnetic motivation;
Described charging is deposited in electric system, and the capacitance group of energy supply electric capacity composition is also connected with storage battery, and when energy supply electric capacity is long-time not to magnetic motivation transmission of electric energy, control capacitance group is connected with storage battery by controller, realizes the charging to storage battery.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201510821939.9A CN105262184A (en) | 2015-11-24 | 2015-11-24 | Quick charge and electricity-storage control method |
Applications Claiming Priority (1)
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CN201510821939.9A CN105262184A (en) | 2015-11-24 | 2015-11-24 | Quick charge and electricity-storage control method |
Publications (1)
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CN105262184A true CN105262184A (en) | 2016-01-20 |
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CN201510821939.9A Pending CN105262184A (en) | 2015-11-24 | 2015-11-24 | Quick charge and electricity-storage control method |
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2015
- 2015-11-24 CN CN201510821939.9A patent/CN105262184A/en active Pending
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Application publication date: 20160120 |