CN106505830A - Power cycles system and method - Google Patents
Power cycles system and method Download PDFInfo
- Publication number
- CN106505830A CN106505830A CN201611159758.5A CN201611159758A CN106505830A CN 106505830 A CN106505830 A CN 106505830A CN 201611159758 A CN201611159758 A CN 201611159758A CN 106505830 A CN106505830 A CN 106505830A
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- accumulator battery
- power cycles
- electric energy
- voltage regulator
- poles magnetic
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K53/00—Alleged dynamo-electric perpetua mobilia
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- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Charge And Discharge Circuits For Batteries Or The Like (AREA)
Abstract
The invention provides a kind of power cycles system and method, is related to power field.The system includes electric energy collection device, voltage regulator and accumulator battery, the electric energy collection device includes electrical energy conversion device and Magnetomotive device, Magnetomotive device includes rotating shaft, multiple N poles magnetic sheet and multiple S poles magnetic sheet, the rotating shaft includes first end and the second end, multiple N poles magnetic sheet is looped around first end in step helix formula, and extend to the second end, multiple S poles magnetic sheet is looped around the second end in step helix formula, and extend to first end, the N poles magnetic sheet forms magnetic induction line with S poles magnetic sheet, the electrical energy conversion device is used for converting apparatus energy and cutting magnetic induction line.Mechanical energy and magnetic energy can be converted into electric energy by the power cycles system and method that the invention is provided, there is provided electric energy produces mechanical energy to load, while mechanical energy is supplied to power cycles system to realize power cycles, energy saving.
Description
Technical field
The present invention relates to power field, in particular to a kind of power cycles system and method.
Background technology
With developing rapidly for the progress in epoch and the offer of people's living standard and industry, demand of the people to the energy
Amount more and more higher, for the consumption of the energy also increasingly severe, century energy crisis, global shortage of electric power, how area have a power failure
More and more universal, great inconvenience is caused to life, and various utensils are extensive all the more, for example, lathe, electric fan, electric motor car
And electric automobile etc., and various utensils are operationally both needed to be driven by electric power or are driven by other fuel,
By fuel come driving implement, not only data consumption is rapid, and can cause greatly pollution to environment, and ecology is caused seriously
Threat.
Now, the traditional energy prices of coal, oil etc. constantly surging, how energy saving, reduce pollution with
And reduces cost is present inevitable development trend, and our urgent problems.
Content of the invention
It is an object of the invention to provide a kind of power cycles system and method, mechanical energy and magnetic energy can be converted into by which
Electric energy, there is provided electric energy produces mechanical energy to loaded work piece, while mechanical energy is supplied to power cycles system, realizes that electric energy is followed
Ring, lifts the utilization rate of energy, reduces pollution, energy saving.
Embodiments of the invention are realized in:
In a first aspect, embodiments providing a kind of power cycles system, which includes that electric energy collection device, voltage are adjusted
Section device and accumulator battery, the voltage regulator are electrically connected with the electric energy collection device and the accumulator battery respectively, institute
State accumulator battery for connection load, to described load be powered;Wherein, the electric energy collection device includes electric energy conversion dress
Put and Magnetomotive device, the Magnetomotive device includes that rotating shaft, multiple N poles magnetic sheet and multiple S poles magnetic sheet, the rotating shaft include first
End and the second end, multiple N poles magnetic sheets are looped around the first end in step helix formula, and to the second end
Extend, multiple S poles magnetic sheets are looped around the second end in step helix formula, and extend to the first end, the N
Pole magnetic sheet forms magnetic induction line with S poles magnetic sheet, and the electrical energy conversion device is used for converting mechanical energy and cuts the magnetic strength
Line.
In preferred embodiments of the present invention, said system includes going back magnet charger, the magnet charger and the accumulator battery
Electrical connection, the accumulator battery are used for transmitting the electric current that magnetizes to the magnet charger, the magnet charger is filled in the electric energy acquisition
Put region and form magnetic field, magnetize with multiple S poles magnetic sheets to multiple N poles magnetic sheets.
In preferred embodiments of the present invention, above-mentioned accumulator battery includes the first accumulator battery and the second accumulator battery, institute
State voltage regulator to electrically connect with first accumulator battery and second accumulator battery respectively.
In preferred embodiments of the present invention, said system also includes controller, the controller respectively with the voltage
The electrical connection of actuator, first accumulator battery and second accumulator battery, the controller are used for storing when described first
When set of cells is electrically connected with the voltage regulator, control second accumulator battery and disconnect the connection with the voltage regulator
The load supplying is given, when second accumulator battery is electrically connected with the voltage regulator, first accumulator is controlled
The connection that disconnection is organized with the voltage regulator is to the load supplying.
In preferred embodiments of the present invention, said system also includes charging manager, the charging manager respectively with
The electric energy collection device and voltage regulator electrical connection, for controlling the electric energy collection device to the accumulator battery
Charge.
In preferred embodiments of the present invention, said system also includes charging inlet, the charging inlet and the charging
Manager is electrically connected, for when the not enough power supply that the electric energy collection device is provided, promptly charging to the accumulator battery.
In preferred embodiments of the present invention, said system also includes the first overdischarge controller and the second overdischarge control
Device, the first overdischarge controller are electrically connected with first accumulator battery, the second overdischarge controller and described
Two accumulator batteries are electrically connected.
In preferred embodiments of the present invention, said system also includes that the first overdischarge alarm and the second overdischarge are reported to the police
Device, the first overdischarge alarm are electrically connected with the first overdischarge controller, the second overdischarge alarm and institute
State the electrical connection of the second overdischarge controller.
In preferred embodiments of the present invention, said system display, the display are electrically connected with the charging manager
Connect, for showing the charge condition of the accumulator battery.
Second aspect, the embodiment of the present invention also provide a kind of power cycles method, are applied to power cycles system, the electricity
Can blood circulation include electric energy collection device, voltage regulator and accumulator battery, the voltage regulator respectively with the electricity
Energy harvester and accumulator battery electrical connection, the electric energy collection device include electrical energy conversion device and Magnetomotive device, institute
Stating Magnetomotive device includes that rotating shaft, multiple N poles magnetic sheet and multiple S poles magnetic sheet, the rotating shaft include first end and the second end,
Multiple N poles magnetic sheets are looped around the first end in step helix formula, and extend to the second end, multiple S
Pole magnetic sheet is looped around the second end in step helix formula, and extends to the first end, and methods described includes:The N
Pole magnetic sheet forms magnetic induction line with S poles magnetic sheet;The electrical energy conversion device cuts the magnetic induction line, produces faradic current, passes
The defeated faradic current gives the voltage regulator;The voltage regulator receives the faradic current, by the faradic current
The accumulator battery is transferred to after carrying out rectification;The accumulator battery receives the faradic current, stores the faradic current;Institute
State accumulator battery and discharge the faradic current, for being load supplying, so that the load generation mechanical energy, while by the machine
Tool can be supplied to the power cycles system.
The power cycles system and method that the present invention is provided includes electric energy collection device, voltage regulator and accumulator
Group.Wherein, voltage regulator is electrically connected with electric energy collection device and accumulator battery respectively, and accumulator battery is used for connecting load, right
Load is powered, and the electric energy collection device includes that electrical energy conversion device and Magnetomotive device, Magnetomotive device include rotating shaft, multiple N
Pole magnetic sheet and multiple S poles magnetic sheet, the rotating shaft include first end and the second end, and multiple N poles magnetic sheet is in step helix formula ring
It is wound on first end, and extends to the second end, multiple S poles magnetic sheet is looped around the second end in step helix formula, and to first
End extends.The N poles magnetic sheet forms magnetic induction line with S poles magnetic sheet, and the electrical energy conversion device is used for converting mechanical energy and cutting magnetic
Sense line produces faradic current, then the faradic current is transferred to Charge Management to battery charging.The electric energy that the invention is provided
Mechanical energy and magnetic energy can be converted into electric energy by blood circulation and method, there is provided electric energy produces mechanical energy to loaded work piece, while
Mechanical energy is supplied to power cycles system, power cycles are realized, the utilization rate of energy is lifted, reduces pollution, energy saving.
Other features and advantages of the present invention will be illustrated in subsequent description, also, are partly become from description
It is clear that or being understood by implementing the embodiment of the present invention.The purpose of the present invention and other advantages can be by being write
In description, claims and accompanying drawing, specifically noted structure is realizing and obtain.
Description of the drawings
In order to be illustrated more clearly that the technical scheme of the embodiment of the present invention, below by to be used attached needed for embodiment
Figure is briefly described, it will be appreciated that the following drawings illustrate only certain embodiments of the present invention, and it is right to be therefore not construed as
The restriction of scope, for those of ordinary skill in the art, on the premise of not paying creative work, can be with according to this
A little accompanying drawings obtain other related accompanying drawings.By, shown in accompanying drawing, the above and other purpose of the present invention, feature and advantage will more
Clearly.In whole accompanying drawings, identical reference indicates identical part.Deliberately do not paint by actual size equal proportion scaling
Accompanying drawing processed, it is preferred that emphasis is illustrate the purport of the present invention.
Fig. 1 shows a kind of structured flowchart of power cycles system provided in an embodiment of the present invention;
Fig. 2 shows the structural representation of Magnetomotive device provided in an embodiment of the present invention;
Fig. 3 shows the structural representation at the first visual angle of Magnetomotive device provided in an embodiment of the present invention;
Fig. 4 shows the structured flowchart of another kind of power cycles system provided in an embodiment of the present invention;
Fig. 5 shows the schematic flow sheet of power cycles method provided in an embodiment of the present invention.
Icon:100- power cycles systems;10- electric energy collection devices;12- electrical energy conversion devices;14- Magnetomotive devices;
142- rotating shafts;144-N poles magnetic sheet;146-S poles magnetic sheet;20- voltage regulators;30- accumulator batteries;The first accumulator batteries of 32-;
The second accumulator batteries of 34-;322- the first overdischarge controllers;342- the second overdischarge controllers;The first overdischarge of 324- is reported to the police
Device;344- the second overdischarge alarms;40- magnet chargers;50- controllers;60- charging managers;70- display;80- chargings
Mouthful.
Specific embodiment
Purpose, technical scheme and advantage for making the embodiment of the present invention is clearer, below in conjunction with the embodiment of the present invention
In accompanying drawing, to the embodiment of the present invention in technical scheme be clearly and completely described, it is clear that described embodiment is
The a part of embodiment of the present invention, rather than whole embodiments.Present invention enforcement generally described and illustrated in accompanying drawing herein
The component of example can be arranged and be designed with a variety of configurations.
Therefore, below the detailed description of the embodiments of the invention for providing in the accompanying drawings is not intended to limit claimed
The scope of the present invention, but be merely representative of the present invention selected embodiment.Embodiment in based on the present invention, this area are common
The every other embodiment obtained under the premise of creative work is not made by technical staff, belongs to the model of present invention protection
Enclose.
It should be noted that:Similar label and letter represent similar terms in following accompanying drawing, therefore, once a certain Xiang Yi
It is defined in individual accompanying drawing, then in subsequent accompanying drawing which further need not be defined and be explained.
In describing the invention, it should be noted that term " " center ", " on ", D score, "left", "right", " vertical ",
The orientation of instruction such as " level ", " interior ", " outward " or position relationship be based on orientation shown in the drawings or position relationship, or should
Invention product using when the orientation usually put or position relationship, be for only for ease of the description present invention and simplify description, and not
Be indicate or imply the device or element of indication must have specific orientation, with specific azimuth configuration and operation, therefore not
It is understood that as limitation of the present invention.Additionally, term " first ", " second ", " the 3rd " etc. are only used for distinguishing description, and can not manage
Solve as instruction or hint relative importance.
Additionally, the term such as term " level ", " vertical ", " pendency " is not offered as requiring part abswolute level or pendency, and
It is to be slightly tilted.As " level " only refers to for its direction relative " vertical " more level, it is not the expression structure
Must be fully horizontal, but can be slightly tilted.
In describing the invention, in addition it is also necessary to explanation, unless otherwise clearly defined and limited, term " setting ",
" installation ", " being connected ", " connection " should be interpreted broadly, for example, it may be fixedly connected, or be detachably connected, or one
The connection of body ground;Can be mechanically connected, or electrically connect;Can be joined directly together, it is also possible to indirect by intermediary
It is connected, can is the connection of two element internals.For the ordinary skill in the art, can be with concrete condition understanding
State term concrete meaning in the present invention.
First embodiment
Fig. 1 is refer to, the present embodiment provides a kind of power cycles system 100, which includes that electric energy collection device 10, voltage is adjusted
Section device 20 and accumulator battery 30, wherein, the voltage regulator 20 respectively with the electric energy collection device 10 and the electric power storage
Pond group 30 is electrically connected, and the accumulator battery 30 is used for connecting load, is that load is powered.
Fig. 2 and Fig. 3 is refer to, used as a kind of embodiment, the electric energy collection device 10 includes electrical energy conversion device 12
And Magnetomotive device 14, the electrical energy conversion device 12 is electrically connected with voltage regulator 20, for the electric energy of conversion is transferred to electricity
Pressure actuator 20, wherein, the Magnetomotive device 14 includes rotating shaft 142, multiple N poles magnetic sheet 144 and multiple S poles magnetic sheet 146.At this
In embodiment, the rotating shaft 142 includes first end and the second end, and wherein, multiple N poles magnetic sheets 144 are in step helix
Formula is looped around the first end, and extends to the second end, and multiple S poles magnetic sheets 146 are surround in step helix formula
In the second end, and extend to the first end, N poles magnetic sheet 144 forms magnetic induction line with S poles magnetic sheet 146,
The electrical energy conversion device 12 is used for cutting the magnetic induction line.
Wherein, as a kind of embodiment, the electric energy collection device 10 is installed in load, when loaded work piece, is produced
Mechanical energy collection is converted into electric energy by raw mechanical energy, the electrical energy conversion device 12, is transferred to accumulator battery 30, then by the electricity
Load can be supplied to, so that load continuous work and produce mechanical energy, the recycling of electric energy is realized, when load does not work,
Due to the same sex between N poles magnetic sheet 144 repel each other and S poles magnetic sheet 146 between the same sex effect of repelling each other so that the rotating shaft 142
Persistently rotate, continue cutting magnetic induction line, and produce faradic current, faradic current is transferred to described by the electrical energy conversion device 12
Faradic current is transferred to accumulator battery 30, accumulator battery 30 after carrying out rectifying operation by voltage regulator 20, voltage regulator 20
The faradic current after rectification is received, a part of faradic current is stored in accumulator battery 30, another part faradism is spread
Load is defeated by, powering load is realized power cycles, improves the utilization rate of energy, wherein, in the present embodiment, be supported on work
The conversion of electric energy when making or when not working, can be realized, to realize that the long-time of the power cycles system 100 is powered, is had
Effect improves the insufficient problem of electric energy, it is possible to understand that, the load can be lathe, electric fan, electric motor car etc..
Fig. 4 is refer to, in an embodiment of the present embodiment, the system also includes inverter, wherein, the inverter
Electrically connect with accumulator battery 30, the effect of the inverter is that converting direct-current power into alternating-current power is different grades of to load offer
Voltage.According to the actual needs and load power consumption, determine to load provide voltage size, for example output 220V or
Person 110V etc. difference voltage alternating current, in the present embodiment, preferably inverter change to load provide voltage into 220V's
Alternating current.
Wherein, N poles magnetic sheet 144 is made up of magnetic material with S poles magnetic sheet 146, used as a kind of mode, N poles magnetic sheet 144
Magnetic can directly or indirectly be produced by permanent magnet material or ferrum, cobalt, nickel and its alloy etc. with S poles magnetic sheet 146
Material is made, and N poles magnetic sheet 144 is made generally in chip shape with S poles magnetic sheet 146 so that the electric energy collection device
10 better.
The power cycles system 100 also includes magnet charger 40, and the magnet charger 40 is a kind of magnet filling not enough for magnetic
The instrument of magnetic, its essence is that an electric magnet with super magnetic, electric magnet form closed-loop path with additional iron block, its
In, the magnet charger 40 is electrically connected with the accumulator battery 30, and used as a kind of mode, the accumulator battery 30 gives the magnet charger
40 transmit the electric current that magnetizes, and make the magnet charger 40 form magnetic field in 10 region of the electric energy collection device, to multiple N poles magnetic
Piece 144 is magnetized with multiple S poles magnetic sheets 146.
Wherein, N poles magnetic sheet 144 with S poles magnetic sheet 146 in use, it is possible that magnetic is not enough or demagnetization
Situation, accordingly, it would be desirable to magnet charger 40 is magnetized with S poles magnetic sheet 146 for N poles magnetic sheet 144, ensures power cycles system
100 continuous firing.Used as a kind of mode, the accumulator battery 30 provides the electric current that magnetizes, and produces magnetic field, by N poles magnetic sheet
144 are put in the middle of the magnetic field with S poles magnetic sheet 146, can complete moment to magnetize.
In an embodiment of the present embodiment, the accumulator battery 30 includes the first accumulator battery 32 and the second electric power storage
Pond group 34, accordingly, the voltage regulator 20 is electric with first accumulator battery 32 and second accumulator battery 34 respectively
Connection, for providing faradic current, first accumulator to first accumulator battery 32 and second accumulator battery 34
The faradic current is released to load supplying by group 32 and second accumulator battery 34 storage faradic current.Wherein, institute
The effect for stating accumulator battery 30 is that the unnecessary power storage for having electric energy when converting to provide the electric energy collection device 10 rises
Come, discharged when needing again, first accumulator battery 32 and the second accumulator battery 34 are embodied as load and exchange power supply.
Wherein, the power cycles system 100 also includes controller 50, and the effect of the controller 50 is the first accumulator of control
Group 32 and second accumulator battery 34 switching charge, as a kind of mode, the controller 50 respectively with the voltage regulator
20th, first accumulator battery 32 and second accumulator battery 34 are electrically connected, for control to first accumulator battery
32 and the charging of second accumulator battery 34, in the present embodiment, when first accumulator battery 32 and the voltage-regulation
When device 20 is electrically connected, control the first accumulator battery 32 of the controller 50 disconnects the connection with load, controls the second accumulator battery
34 disconnect the connection powering load with voltage regulator 20, wherein, when 34 powering load of the second accumulator battery, electric energy
When being discharged into minimum, the controller 50 is controlled the second accumulator battery 34 and is electrically connected with voltage regulator 20, and is disconnected and loaded
Connection, control first accumulator battery 32 and disconnect connection powering load with voltage regulator 20, so circulate, improve
The utilization rate of energy, also ensures that first accumulator battery 32 stores electric energy with second accumulator battery 34.
Wherein, the power cycles sexual system also includes the first overdischarge controller 322 and the second overdischarge controller
342, wherein, the first overdischarge controller 322 is electrically connected with first accumulator battery 32, the second overdischarge control
Device 342 is electrically connected with second accumulator battery 34, as a kind of mode, the first overdischarge controller 322 pairs described
One over of accumulator battery 32, if after 32 deep discharge of the first accumulator battery, electric energy collection device 10 will not
Generate electricity because first accumulator battery 32 needs charging, so as to cause 32 lifetime of the first accumulator battery, likewise, institute more
Second accumulator battery, 34 overs of the second overdischarge controller 342 pairs are stated, if second accumulator battery 34
After deep discharge, electric energy collection device 10 will not generate electricity because second accumulator battery 34 needs to charge more, so as to cause the
Two accumulator batteries, 34 lifetime.
Used as a kind of embodiment, the power cycles system 100 also includes the first overdischarge alarm 324 and the second mistake
Electric discharge alarm 344, wherein, the first overdischarge alarm 324 is electrically connected with the first overdischarge controller 322, institute
State the second overdischarge alarm 344 to electrically connect with the second overdischarge controller 342, cross when first accumulator battery 32 and put
When electric, the first overdischarge alarm 324 sends alarm, the alarm can be flicker alarm lamp, or
Alarm sound etc. is sent, when 34 overdischarge of the second accumulator battery, the second overdischarge alarm 344 sends warning and carries
Show, the alarm can be flicker alarm lamp, or send alarm sound etc..
In the present embodiment, the power cycles system 100 also includes charging manager 60, wherein, the charging manager
60 are electrically connected with the electric energy collection device 10 and the voltage regulator 20 respectively, for controlling the electric energy collection device 10
The accumulator battery 30 is charged.
Used as a kind of embodiment, the power cycles system 100 also includes display 70, wherein, the display 70 with
The charging manager 60 is electrically connected, and for showing the charge condition of the accumulator battery 30, wherein, the display 70 is conducive to
People observe and understand the charge condition of the accumulator battery 30 in real time, make so as to the situation of not enough power supply and timely tackling.
In the present embodiment, the power cycles system 100 also includes charging inlet 80, wherein, the charging inlet 80 and institute
State charging manager 60 to electrically connect, for when the not enough power supply that the electric energy collection device 10 is provided, to the accumulator battery
30 charge, and wherein, the charging inlet 80 can be USB interface, or com interface etc..
The operation principle of power cycles system 100 is:The power cycles system 100 includes electric energy collection device 10, voltage
Actuator 20 and accumulator battery 30.Wherein, voltage regulator 20 is electrically connected with electric energy collection device 10 and accumulator battery 30 respectively
Connect, accumulator battery 30 is used for connecting load, and load is powered, and the electric energy collection device 10 includes 12 He of electrical energy conversion device
Magnetomotive device 14, Magnetomotive device 14 include that rotating shaft 142, multiple N poles magnetic sheet 144 and multiple S poles magnetic sheet 146, the rotating shaft 142 are wrapped
First end and the second end is included, multiple N poles magnetic sheet 144 is looped around first end in step helix formula, and prolongs to the second end
Stretch, multiple S poles magnetic sheet 146 is looped around the second end in step helix formula, and extend to first end, the N poles magnetic sheet 144 and S
Pole magnetic sheet 146 forms magnetic induction line, and the electrical energy conversion device 12 is used for converting mechanical energy and cutting magnetic induction line produces faradic current,
The faradic current is transferred to Charge Management again to charge to accumulator battery 30, so that loaded work piece produces mechanical energy, while by machine
Tool can be supplied to power cycles system 100.Mechanical energy and magnetic energy can be turned by the power cycles system and method that the invention is provided
Turn to electric energy, there is provided electric energy produces mechanical energy to loaded work piece, while mechanical energy is supplied to power cycles system 100, realize
Power cycles, lift the utilization rate of energy, reduce pollution, energy saving.
Second embodiment
Fig. 5 is refer to, Fig. 5 shows the schematic flow sheet of power cycles method provided in an embodiment of the present invention, below will
It is explained in detail for the flow process shown in Fig. 5, methods described is applied to power cycles system 100, the power cycles system
System 100 includes electric energy collection device 10, voltage regulator 20 and accumulator battery 30, the voltage regulator 20 respectively with described
Electric energy collection device 10 and the accumulator battery 30 are electrically connected, and the electric energy collection device 10 includes electrical energy conversion device 12 and magnetic
Dynamic device 14, the Magnetomotive device 14 include rotating shaft 142, multiple N poles magnetic sheet 144 and multiple S poles magnetic sheet 146, the rotating shaft
142 include that first end and the second end, multiple N poles magnetic sheets 144 are looped around the first end in step helix formula, and
Extend to the second end, multiple S poles magnetic sheets 146 are looped around the second end in step helix formula, and to described
First end extends, and methods described includes:
Step S110:N poles magnetic sheet 144 forms magnetic induction line with S poles magnetic sheet 146.
Wherein, multiple N poles magnetic sheets 144 are looped around the first end in step helix formula, and to second end
Portion extends, and multiple S poles magnetic sheets 146 are looped around the second end in step helix formula, and extend to the first end,
N poles magnetic sheet 144 forms magnetic induction line with S poles magnetic sheet 146.
Step S120:The electrical energy conversion device 12 cuts the magnetic induction line, produces faradic current, transmits the faradism
Flow to the voltage regulator 20.
Used as a kind of mode, electrical energy conversion device 12 cuts the magnetic induction line that N poles magnetic sheet 144 is formed with S poles magnetic sheet 146,
Faradic current is formed in closed-loop path, and the faradic current is transferred to the voltage regulator 20 by the electric energy collection device 10.
Step S130:The voltage regulator 20 receives the faradic current, carries out passing after rectification by the faradic current
It is defeated by the accumulator battery 30.
In an embodiment of the present embodiment, voltage regulator 20 receives the faradism of the transmission of electric energy collection device 10
Stream, electric energy collection device 10 are carried out to electrical equipment or are charged to accumulator battery 30, are required for its voltage stabilization, so in order to
Make voltage remain at a certain numerical value, need to be adjusted output voltage, i.e., described voltage regulator 20 is by the sensing
Electric current is transferred to the accumulator battery 30 after carrying out rectification.
Step S140:The accumulator battery 30 receives the faradic current, stores the faradic current.
Wherein, accumulator battery 30 is received through the faradic current after 20 rectification of the voltage regulator, the accumulator battery 30
The faradic current for receiving is stored, powering load again when needing.
Step S150:The accumulator battery 30 discharges the faradic current, for for load supplying, so that the load is produced
Raw mechanical energy, while be supplied to the power cycles system 100 by the mechanical energy.
Used as a kind of embodiment, the accumulator battery 30 is used for connecting load, and the faradic current of storage is transferred to
Load, be load supplying, make loaded work piece produce mechanical energy, improve energy utilization rate, wherein, the load can be lathe,
Electric fan and electric motor car etc..
The power cycles system 100 that the present invention is provided is formed with S poles magnetic sheet 146 by N poles magnetic sheet 144 first
Magnetic induction line, then the electrical energy conversion device 12 cut the magnetic induction line, produce faradic current, transmit the faradic current to institute
Voltage regulator 20 is stated, the voltage regulator 20 receives the faradic current, carry out transmitting after rectification by the faradic current
Receive the faradic current to the accumulator battery 30, the accumulator battery 30, store the faradic current, the finally electric power storage
Pond group 30 discharges the faradic current, for for load supplying, so that load produces mechanical energy, while mechanical energy is supplied to electricity
Can blood circulation 100.So as to mechanical energy and magnetic energy are converted into electric energy, there is provided electric energy produces mechanical energy to loaded work piece, while
Mechanical energy is supplied to power cycles system 100, power cycles are realized, the utilization rate of energy is improved, reduces pollution, save energy
Source.
In sum, the power cycles system and method that the present invention is provided includes electric energy collection device 10, voltage regulator
20 and accumulator battery 30.Wherein, voltage regulator 20 is electrically connected with electric energy collection device 10 and accumulator battery 30 respectively, electric power storage
Pond group 30 is used for connecting load, and load is powered, and the electric energy collection device 10 includes electrical energy conversion device 12 and the dynamic dress of magnetic
14 are put, Magnetomotive device 14 includes that rotating shaft 142, multiple N poles magnetic sheet 144 and multiple S poles magnetic sheet 146, the rotating shaft 142 include first
End and the second end, multiple N poles magnetic sheet 144 are looped around first end in step helix formula, and extend to the second end, multiple
S poles magnetic sheet 146 is looped around the second end in step helix formula, and extends to first end, the N poles magnetic sheet 144 and S poles magnetic sheet
146 form magnetic induction line, and the electrical energy conversion device 12 is used for converting mechanical energy and cutting magnetic induction line produces faradic current, then should
Faradic current is transferred to Charge Management and charges to accumulator battery 30, so that loaded work piece produces mechanical energy, while mechanical energy is carried
Supply of electrical energy blood circulation 100.Mechanical energy and magnetic energy can be converted into electricity by the power cycles system and method that the invention is provided
Can, there is provided electric energy produces mechanical energy to loaded work piece, while mechanical energy is supplied to power cycles system 100, realizes that electric energy is followed
Ring, lifts the utilization rate of energy, reduces pollution, energy saving.
The preferred embodiments of the present invention are the foregoing is only, the present invention is not limited to, for the skill of this area
For art personnel, the present invention can have various modifications and variations.All within the spirit and principles in the present invention, made any repair
Change, equivalent, improvement etc., should be included within the scope of the present invention.
Claims (10)
1. a kind of power cycles system, it is characterised in that including electric energy collection device, voltage regulator and accumulator battery, institute
State voltage regulator to electrically connect with the electric energy collection device and the accumulator battery respectively, the accumulator battery is negative for connecting
Carry, the load is powered;
The electric energy collection device includes that electrical energy conversion device and Magnetomotive device, the Magnetomotive device include rotating shaft, multiple N poles magnetic
Piece and multiple S poles magnetic sheet, the rotating shaft include first end and the second end, and multiple N poles magnetic sheets are in step helix formula
The first end is looped around, and is extended to the second end, multiple S poles magnetic sheets are looped around in step helix formula described
The second end, and extend to the first end, N poles magnetic sheet forms magnetic induction line, the electric energy conversion with S poles magnetic sheet
Device is used for converting mechanical energy and cuts the magnetic induction line.
2. power cycles system according to claim 1, it is characterised in that the system includes going back magnet charger, described fills
Magnetomechanical is electrically connected with the accumulator battery, and the accumulator battery is used for transmitting the electric current that magnetizes to the magnet charger, makes described magnetizing
Machine forms magnetic field in the electric energy collection device region, magnetizes with multiple S poles magnetic sheets to multiple N poles magnetic sheets.
3. power cycles system according to claim 1, it is characterised in that the accumulator battery includes the first accumulator battery
With the second accumulator battery, the voltage regulator electrically connected with first accumulator battery and second accumulator battery respectively.
4. power cycles system according to claim 3, it is characterised in that the system also includes controller, the control
Device processed is electrically connected with the voltage regulator, first accumulator battery and second accumulator battery respectively, the control
Device is used for, when first accumulator battery is electrically connected with the voltage regulator, controlling second accumulator battery and disconnecting and institute
The connection of voltage regulator is stated to the load supplying, when second accumulator battery is electrically connected with the voltage regulator,
The connection that the first accumulator battery disconnection is controlled with the voltage regulator is to the load supplying.
5. power cycles system according to claim 1, it is characterised in that the system also includes charging manager, institute
State charging manager to electrically connect with the electric energy collection device and the voltage regulator respectively, for controlling the electric energy acquisition
Device is to the battery charging.
6. power cycles system according to claim 5, it is characterised in that the system also includes charging inlet, described
Charging inlet is electrically connected with the charging manager, for when the not enough power supply that the electric energy collection device is provided, to described
Accumulator battery promptly charges.
7. power cycles system according to claim 3, it is characterised in that the system also includes that the first overdischarge is controlled
Device and the second overdischarge controller, the first overdischarge controller are electrically connected with first accumulator battery, second mistake
Discharge controller is electrically connected with second accumulator battery.
8. power cycles system according to claim 7, it is characterised in that the system also includes that the first overdischarge is reported to the police
Device and the second overdischarge alarm, the first overdischarge alarm are electrically connected with the first overdischarge controller, and described
Two overdischarge alarms are electrically connected with the second overdischarge controller.
9. power cycles system according to claim 5, it is characterised in that the system display, the display with
The charging manager electrical connection, for showing the charge condition of the accumulator battery.
10. a kind of power cycles method, it is characterised in that be applied to power cycles system, the power cycles system includes electricity
Can harvester, voltage regulator and accumulator battery, the voltage regulator respectively with the electric energy collection device and described
Accumulator battery is electrically connected, and the electric energy collection device includes that electrical energy conversion device and Magnetomotive device, the Magnetomotive device include turning
Axle, multiple N poles magnetic sheet and multiple S poles magnetic sheet, the rotating shaft include first end and the second end, multiple N poles magnetic sheets
The first end being looped around in step helix formula, and being extended to the second end, multiple S poles magnetic sheets are in step helix
Formula is looped around the second end, and extends to the first end, and methods described includes:
N poles magnetic sheet forms magnetic induction line with S poles magnetic sheet;
The electrical energy conversion device cuts the magnetic induction line, produces faradic current, transmits the faradic current and adjusts to the voltage
Section device;
The voltage regulator receives the faradic current, is transferred to the accumulator after the faradic current is carried out rectification
Group;
The accumulator battery receives the faradic current, stores the faradic current;
The accumulator battery discharges the faradic current, for being load supplying, so that the load produces mechanical energy, while general
The mechanical energy is supplied to the power cycles system.
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CN201611159758.5A CN106505830B (en) | 2016-12-14 | 2016-12-14 | Power cycles system and method |
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CN201611159758.5A CN106505830B (en) | 2016-12-14 | 2016-12-14 | Power cycles system and method |
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CN106505830B CN106505830B (en) | 2019-09-17 |
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Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1350357A (en) * | 2001-09-08 | 2002-05-22 | 贺雷 | Ring motor |
CN201113677Y (en) * | 2007-10-06 | 2008-09-10 | 韩学志 | Axial flow type permanent-magnet generator |
CN102651569A (en) * | 2011-02-25 | 2012-08-29 | 固昌通讯股份有限公司 | electronic device |
CN206294053U (en) * | 2016-12-14 | 2017-06-30 | 王圣 | Power cycles system and network system |
-
2016
- 2016-12-14 CN CN201611159758.5A patent/CN106505830B/en not_active Expired - Fee Related
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1350357A (en) * | 2001-09-08 | 2002-05-22 | 贺雷 | Ring motor |
CN201113677Y (en) * | 2007-10-06 | 2008-09-10 | 韩学志 | Axial flow type permanent-magnet generator |
CN102651569A (en) * | 2011-02-25 | 2012-08-29 | 固昌通讯股份有限公司 | electronic device |
CN206294053U (en) * | 2016-12-14 | 2017-06-30 | 王圣 | Power cycles system and network system |
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CN106505830B (en) | 2019-09-17 |
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