CN108364569B - Energy-saving lighting billboard taking light, wind and hydrogen new energy system as power supply - Google Patents

Energy-saving lighting billboard taking light, wind and hydrogen new energy system as power supply Download PDF

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Publication number
CN108364569B
CN108364569B CN201810312935.1A CN201810312935A CN108364569B CN 108364569 B CN108364569 B CN 108364569B CN 201810312935 A CN201810312935 A CN 201810312935A CN 108364569 B CN108364569 B CN 108364569B
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energy
saving lighting
circuit control
lighting billboard
saving
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CN108364569A (en
Inventor
乐晓红
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HUNAN JINLIGANG ADVERTISING COMMUNICATION Co.,Ltd.
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Hunan Jinligang Advertising Communication Co ltd
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S9/00Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply
    • F21S9/02Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a battery or accumulator
    • F21S9/03Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a battery or accumulator rechargeable by exposure to light
    • F21S9/035Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a battery or accumulator rechargeable by exposure to light the solar unit being integrated within the support for the lighting unit, e.g. within or on a pole
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S9/00Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply
    • F21S9/04Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a generator
    • F21S9/043Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a generator driven by wind power, e.g. by wind turbines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/02Arrangement of electric circuit elements in or on lighting devices the elements being transformers, impedances or power supply units, e.g. a transformer with a rectifier
    • F21V23/023Power supplies in a casing

Abstract

The invention discloses an energy-saving lighting billboard taking a light, wind and hydrogen new energy system as a power supply source, which structurally comprises an energy-saving lighting billboard fixing support frame, an energy-saving lighting billboard device main body and an energy-saving lighting billboard internal circuit control transmission mechanism, wherein the energy-saving lighting billboard internal circuit control transmission mechanism is provided with a first solar power generation control transmission device, an energy-saving lighting billboard internal control power box, a first wind power control reverse circuit transmission mechanism, a second solar power generation control transmission device and a second wind power control reverse circuit transmission mechanism, so that when equipment is used, effective wind power supply can be carried out through wind power in all directions, meanwhile, bidirectional power supply can be carried out through solar energy, the stable and continuous power supply of electric quantity is ensured, and the problem that the energy-saving lighting billboard is insufficient in power supply and normal use is influenced is avoided.

Description

Energy-saving lighting billboard taking light, wind and hydrogen new energy system as power supply
Technical Field
The invention relates to an energy-saving lighting billboard taking a light, wind and hydrogen new energy system as a power supply source, belonging to the field of energy-saving lighting billboards.
Background
The illuminating lamps on the advertising boards in various places originally supply electric energy by means of electric power on a power supply network, 81% of electric power on the power supply network at present is generated by coal burning, and the generation of electricity by burning coal or petroleum can generate a large amount of greenhouse gases such as carbon dioxide and the like, so that the change of climate is aggravated.
When the prior art is used, the outdoor illumination billboard is easily influenced by wind power change, weather cloudy and sunny change and day and night change when the outdoor illumination billboard provides the electric power required by the illumination of the billboard by means of two renewable energy power generation modes of solar power generation and wind power generation, the power supply is not stable enough, and the normal use of the illumination billboard is influenced.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide an energy-saving lighting billboard taking a light, wind and hydrogen new energy system as a power supply source, so as to solve the problem that when the outdoor lighting billboard is used in the prior art, the outdoor lighting billboard is easily influenced by the change of wind power, the change of weather and cloudy days and the change of day and night when the outdoor lighting billboard provides the power required by the illumination of the billboard by means of two renewable energy power generation modes of solar power generation and wind power generation, the power supply is not stable enough, and the normal use of the lighting billboard is influenced.
In order to achieve the purpose, the invention is realized by the following technical scheme: an energy-saving lighting billboard taking a light, wind and hydrogen new energy system as a power supply structurally comprises an energy-saving lighting billboard fixing support frame, an energy-saving lighting billboard device main body and an energy-saving lighting billboard internal circuit control transmission mechanism, wherein the energy-saving lighting billboard fixing support frame is connected below the energy-saving lighting billboard device main body in a riveting mode through bolts, the energy-saving lighting billboard device main body is connected to the energy-saving lighting billboard fixing support frame in a riveting mode through bolts, the energy-saving lighting billboard internal circuit control transmission mechanism is connected to the inner wall of the energy-saving lighting billboard device main body in a riveting mode through bolts, the energy-saving lighting billboard fixing support frame is provided with an energy-saving lighting billboard support frame device and an energy-saving lighting billboard light support frame device, and the energy-saving lighting billboard support frame device is connected below the energy-saving lighting billboard light support frame device in a riveting mode through bolts, the energy-saving illumination advertising board illuminating lamp support device is connected to the top of the energy-saving illumination advertising board fixing support frame in a riveting mode through bolts; the energy-saving lighting billboard bracket device is provided with an energy-saving lighting billboard bracket fixing base, an energy-saving lighting billboard bracket reinforcing wing plate and an energy-saving lighting billboard bracket supporting main rod, wherein the energy-saving lighting billboard bracket fixing base is connected to the bottom of the energy-saving lighting billboard bracket supporting main rod in a riveting manner through bolts; the energy-saving illumination advertising board illuminating lamp support device is provided with an illuminating lamp fixing connecting rod, an energy-saving illuminating lamp and an energy-saving illumination advertising board illuminating lamp support fixing connecting plate, the illuminating lamp fixing connecting rod is connected to the back face of the main body of the energy-saving illumination advertising board device in a riveting mode through a bolt, the energy-saving illuminating lamp is electrically connected to one end of the illuminating lamp fixing connecting rod, and the energy-saving illumination advertising board illuminating lamp support fixing connecting plate is connected between the energy-saving illumination advertising board support supporting main rod and the main body of the energy-saving illumination advertising board device in a riveting mode through; the energy-saving lighting billboard device comprises an energy-saving lighting billboard device main body, a first energy-saving lighting billboard transmission case, a second energy-saving lighting billboard transmission case, a first dustproof ventilation filter screen, a second dustproof ventilation filter screen and an energy-saving lighting billboard display screen, wherein the first energy-saving lighting billboard transmission case is vertically welded on one side of the energy-saving lighting billboard display screen, the second energy-saving lighting billboard transmission case is vertically welded on the other side of the energy-saving lighting billboard display screen, the first dustproof ventilation filter screen is embedded on the outer surface of the first energy-saving lighting billboard transmission case, the second dustproof ventilation filter screen is embedded on the outer surface of the second energy-saving lighting billboard transmission case, and the energy-saving lighting billboard display screen is embedded between the first dustproof ventilation filter screen and the second dustproof ventilation filter screen; the internal circuit control transmission mechanism of the energy-saving lighting billboard is provided with a first solar power generation control transmission device, an internal control power box of the energy-saving lighting billboard, a first wind power control reverse circuit transmission mechanism, a second solar power generation control transmission device and a second wind power control reverse circuit transmission mechanism, the first solar power generation control transmission device is connected to the inner wall of the transmission case of the first energy-saving lighting billboard through bolts in a riveting manner, the internal control power box of the energy-saving lighting billboard is embedded in the bottom surface of the internal part of the main body of the energy-saving lighting billboard device, the first wind power control reverse circuit transmission mechanism is connected to the inner wall of the main body of the energy-saving lighting billboard device through bolts in a riveting manner, the second solar power generation control transmission device is connected to the inner wall of the wind power transmission case of the second energy-saving lighting billboard through bolts in a riveting manner, and the second wind power control reverse circuit transmission mechanism is connected to the main body of the energy-saving lighting billboard device On the wall.
Furthermore, the first solar power generation control transmission device is provided with a first solar monocrystalline silicon plate, a first internal power generation connecting wire and a first power generation photovoltaic cell, the first solar monocrystalline silicon plate is connected to the upper surface of the main body of the energy-saving lighting billboard device through bolts in a riveting mode, the first internal power generation connecting wire is connected between the first solar monocrystalline silicon plate and the internal control power box of the energy-saving lighting billboard, and the first power generation photovoltaic cell is connected to the inner wall of the transmission case of the first energy-saving lighting billboard through bolts in a riveting mode.
Furthermore, the first wind power control reverse circuit transmission mechanism is provided with a first wind power control rotating windmill, a first traction line control transmission small pulley, a first circuit control transmission traction line, a first circuit control power-on balance support rod, a first power-on balance support rod movable rotating shaft, a first circuit control power-on metal small round ball, a first positive circuit control connecting groove, a first reverse circuit control connecting groove, a first circuit control transmission power box and a first wind power control connecting lead, the first wind power control rotating windmill is connected to the inner wall of the first energy-saving lighting billboard transmission case through threaded engagement, and the first traction line control transmission small pulley is connected to the upper portion of the first circuit control transmission power box through bolt riveting.
Furthermore, the first circuit control transmission traction wire is connected between the first wind power control rotating windmill and the first circuit control electrified balance support rod, the first circuit control electrified balance support rod is connected to the first electrified balance support rod movable rotating shaft through threaded engagement, and the first electrified balance support rod movable rotating shaft is connected to the inner wall of the main body of the energy-saving lighting billboard device through bolt riveting.
Furthermore, first circuit control circular telegram metal bobble vertical welding is in first circuit control circular telegram balanced branch one end, first positive circuit control spread groove inlays and locates first circuit control circular telegram metal bobble top, first anti-circuit control spread groove inlays and locates first circuit control circular telegram metal bobble below.
Furthermore, the first circuit control transmission power box is connected to the inner wall of the main body of the energy-saving lighting billboard device in a riveting mode through bolts, and the first wind power control connecting wire is connected between the first circuit control transmission power box and the internal control power box of the energy-saving lighting billboard device.
Furthermore, the second solar power generation control transmission device is provided with a second solar monocrystalline silicon plate, a second internal power generation connecting wire and a second power generation photovoltaic cell, the second solar monocrystalline silicon plate is connected to the upper surface of the main body of the energy-saving lighting billboard device through bolts in a riveting mode, the second internal power generation connecting wire is connected between the second solar monocrystalline silicon plate and the internal control power box of the energy-saving lighting billboard, and the second power generation photovoltaic cell is connected to the inner wall of the transmission case of the second energy-saving lighting billboard through bolts in a riveting mode.
Furthermore, the second wind power control reverse circuit transmission mechanism is provided with a second wind power control rotating windmill, a second traction line control transmission small pulley, a second circuit control transmission traction line, a second circuit control electrifying balance supporting rod, a second electrifying balance supporting rod movable rotating shaft, a second circuit control electrifying metal small ball, a second positive circuit control connecting groove, a second reverse circuit control connecting groove, a second circuit control transmission power box and a second wind power control connecting lead, the second wind power control rotating windmill is connected to the inner wall of the second energy-saving lighting billboard transmission case through threaded engagement, and the second traction line control transmission small pulley is connected above the second circuit control transmission power box through bolt riveting.
Furthermore, the second circuit control transmission pull wire is connected between the second wind power control rotating windmill and the second circuit control electrifying balance supporting rod, the second circuit control electrifying balance supporting rod is connected to the second electrifying balance supporting rod movable rotating shaft in a threaded engagement mode, and the second electrifying balance supporting rod movable rotating shaft is connected to the inner wall of the main body of the energy-saving lighting billboard device in a riveting mode through bolts.
Furthermore, the second circuit control circular telegram metal small ball is perpendicularly welded at one end of the second circuit control circular telegram balance supporting rod, the second positive circuit control connecting groove is embedded above the second circuit control circular telegram metal small ball, the second reverse circuit control connecting groove is embedded below the second circuit control circular telegram metal small ball, the second circuit control transmission power box is connected to the inner wall of the main body of the energy-saving lighting billboard device through bolt riveting, and the second wind power control connecting wire is connected between the second circuit control transmission power box and the internal control power box of the energy-saving lighting billboard.
Advantageous effects
When the energy-saving lighting billboard using a light, wind and hydrogen new energy system as a power supply works, a first solar power generation control transmission device is arranged, the first solar power generation control transmission device is provided with a first solar monocrystalline silicon plate, a first internal power generation connecting wire and a first power generation photovoltaic cell, the first solar monocrystalline silicon plate absorbs heat of sunlight, and the first power generation photovoltaic cell converts heat into electric energy to supply power to a lighting lamp and the billboard; the first wind power control reverse circuit transmission mechanism is provided with a first wind power control rotary windmill, a first traction line control transmission small pulley, a first circuit control transmission traction line, a first circuit control energization balance supporting rod, a first energization balance supporting rod movable rotating shaft, a first circuit control energization metal small ball, a first positive circuit control connecting groove, a first reverse circuit control connecting groove, a first circuit control transmission power supply box and a first wind power control connecting lead, the first wind power control rotary windmill is driven to rotate by wind power, the first circuit control transmission traction line is driven to move when the first wind power control rotary windmill rotates, the first circuit control energization balance supporting rod is enabled to lose balance, the first circuit control energization metal small ball is randomly connected with the first positive circuit control connecting groove or the first reverse circuit control connecting groove, ensuring that the power supply is not disconnected; the second solar power generation control transmission device is provided with a second solar monocrystalline silicon plate, a second internal power generation connecting lead and a second power generation photovoltaic cell, the second solar monocrystalline silicon plate absorbs the heat of sunlight, and the second power generation photovoltaic cell converts the heat into electric energy to supply power to the illuminating lamp and the advertising board; the second wind power control reverse circuit transmission mechanism is provided with a second wind power control rotary windmill, a second traction line control transmission small pulley, a second circuit control transmission traction line, a second circuit control electrifying balance supporting rod, a second electrifying balance supporting rod movable rotating shaft, a second circuit control electrifying metal small ball, a second positive circuit control connecting groove, a second reverse circuit control connecting groove, a second circuit control transmission power supply box and a second wind power control connecting lead, the second wind power control rotary windmill is driven to rotate by wind power, the second circuit control transmission traction line is driven to move when the second wind power control rotary windmill rotates, the second circuit control electrifying balance supporting rod is out of balance, the second circuit control electrifying metal small ball is randomly connected with the second positive circuit control connecting groove or the second reverse circuit control connecting groove, ensuring that the power supply is not disconnected; through mutually supporting of above device, can carry out effectual wind-force power supply through the wind-force of all directions, carry out two-way power supply through solar energy simultaneously, guarantee the stability of electric quantity and last power supply, avoid causing energy-conserving illumination bill-board power supply not enough, influence normal use.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
fig. 1 is a schematic structural diagram of an energy-saving lighting billboard using a light, wind and hydrogen new energy system as a power supply.
Fig. 2 is a schematic view of the internal structure of the energy-saving illumination billboard device in a static state.
Fig. 3 is a schematic view of the internal structure of the energy-saving illumination billboard device in the working state.
FIG. 4 is an enlarged schematic view of the first circuit controlled transmission power box of the present invention.
FIG. 5 is an enlarged schematic view of a second circuit controlled transmission power box according to the present invention.
In the figure: an energy-saving lighting billboard fixing support frame-1, an energy-saving lighting billboard device main body-2, an energy-saving lighting billboard internal circuit control transmission mechanism-3, an energy-saving lighting billboard support frame device-10, an energy-saving lighting billboard lighting lamp support frame device-11, an energy-saving lighting billboard support fixing base-100, an energy-saving lighting billboard support reinforcing wing plate-101, an energy-saving lighting billboard support main rod-102, a lighting lamp fixing connecting rod-110, an energy-saving lighting lamp-111, an energy-saving lighting billboard lighting lamp support fixing connecting plate-112, a first energy-saving lighting billboard transmission case-20, a second energy-saving lighting billboard transmission case-21, a first dustproof ventilation filter screen-22, a second dustproof ventilation filter screen-23, an energy-saving lighting billboard display screen-24, a power supply device and a power supply device, A first solar power generation control transmission device-30, a first solar monocrystalline silicon plate-300, a first internal power generation connecting lead-301, a first lighting photovoltaic cell-302, an energy-saving lighting billboard internal control power supply box-31, a first wind power control reversal circuit transmission mechanism-32, a first wind power control rotary windmill-320, a first traction line control transmission small pulley-321, a first circuit control transmission traction line-322, a first circuit control electrification balance support rod-323, a first electrification balance support rod movable rotating shaft-324, a first circuit control electrification small metal ball-325, a first positive circuit control connecting groove-326, a first reversal circuit control connecting groove-327, a first circuit control transmission power supply box-328, a first wind power control connecting lead-329, A second solar power generation control transmission device-33, a second solar single crystal silicon plate-330, a second internal power generation connecting lead-331, a second power generation photovoltaic cell-334, a second wind power control reversal circuit transmission mechanism-34, a second wind power control rotating windmill-340, a second traction line control transmission small pulley-341, a second circuit control transmission traction line-342, a second circuit control electrifying balance support rod-343, a second electrifying balance support rod movable rotating shaft-344, a second circuit control electrifying metal small ball-345, a second positive circuit control connection groove-346, a second reversal circuit control connection groove-347, a second circuit control transmission power supply box-348 and a second wind power control connection lead-349.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
Referring to fig. 1 to 5, the present invention provides a technical solution of an energy-saving lighting billboard using a light, wind, and hydrogen new energy system as a power supply: the energy-saving lighting billboard comprises an energy-saving lighting billboard fixing support frame 1, an energy-saving lighting billboard device main body 2 and an energy-saving lighting billboard internal circuit control transmission mechanism 3, wherein the energy-saving lighting billboard fixing support frame 1 is connected below the energy-saving lighting billboard device main body 2 in a riveting manner through bolts, the energy-saving lighting billboard device main body 2 is connected on the energy-saving lighting billboard fixing support frame 1 in a riveting manner through bolts, the energy-saving lighting billboard internal circuit control transmission mechanism 3 is connected on the inner wall of the energy-saving lighting billboard device main body 2 in a riveting manner through bolts, the energy-saving lighting billboard fixing support frame 1 is provided with an energy-saving lighting billboard support frame device 10 and an energy-saving lighting billboard light support device 11, the energy-saving lighting billboard support device 10 is connected below the energy-saving lighting billboard light support device 11 in a riveting manner through bolts, the energy-saving illumination advertising board illuminating lamp support device 11 is connected to the top of the energy-saving illumination advertising board fixing support frame 1 in a riveting mode through bolts; the energy-saving lighting billboard bracket device 10 is provided with an energy-saving lighting billboard bracket fixing base 100, an energy-saving lighting billboard bracket reinforcing wing plate 101 and an energy-saving lighting billboard bracket supporting main rod 102, wherein the energy-saving lighting billboard bracket fixing base 100 is connected to the bottom of the energy-saving lighting billboard bracket supporting main rod 102 in a riveting manner through bolts, the energy-saving lighting billboard bracket reinforcing wing plate 101 is vertically welded on the outer surface of the energy-saving lighting billboard bracket fixing base 100, and the energy-saving lighting billboard bracket supporting main rod 102 is connected between the energy-saving lighting billboard bracket fixing base 100 and the energy-saving lighting billboard illuminating lamp bracket device 11 in a riveting manner through bolts; the energy-saving illumination advertisement board illuminating lamp bracket device 11 is provided with an illumination lamp fixing connecting rod 110, an energy-saving illumination lamp 111 and an energy-saving illumination advertisement board illuminating lamp bracket fixing connecting plate 112, the illumination lamp fixing connecting rod 110 is connected to the back of the energy-saving illumination advertisement board device main body 2 in a riveting mode through a bolt, the energy-saving illumination lamp 111 is electrically connected to one end of the illumination lamp fixing connecting rod 110, and the energy-saving illumination advertisement board illuminating lamp bracket fixing connecting plate 112 is connected between the energy-saving illumination advertisement board bracket supporting main rod 102 and the energy-saving illumination advertisement board device main body 2 in a riveting mode through a bolt; the energy-saving illumination billboard device main body 2 is provided with a first energy-saving illumination billboard transmission case 20, a second energy-saving illumination billboard transmission case 21, a first dustproof ventilation filter screen 22, a second dustproof ventilation filter screen 23 and an energy-saving illumination billboard display screen 24, the first energy-saving lighting billboard transmission case 20 is vertically welded on one side of the energy-saving lighting billboard display screen 24, the second energy-saving lighting billboard transmission case 21 is vertically welded on the other side of the energy-saving lighting billboard display screen 24, the first dustproof ventilation filter screen 22 is embedded on the outer surface of the first energy-saving lighting billboard transmission case 20, the second dustproof ventilation filter screen 23 is embedded on the outer surface of the second energy-saving lighting billboard transmission case 21, the energy-saving lighting billboard display screen 24 is embedded between the first dustproof ventilation filter screen 22 and the second dustproof ventilation filter screen 23; the internal circuit control transmission mechanism 3 of the energy-saving lighting billboard is provided with a first solar power generation control transmission device 30, an internal control power box 31 of the energy-saving lighting billboard, a first wind power control reverse circuit transmission mechanism 32, a second solar power generation control transmission device 33 and a second wind power control reverse circuit transmission mechanism 34, the first solar power generation control transmission device 30 is riveted on the inner wall of the first energy-saving lighting billboard transmission case 20 through bolts, the internal control power box 31 of the energy-saving lighting billboard is embedded on the bottom surface inside the energy-saving lighting billboard device main body 2, the first wind power control reverse circuit transmission mechanism 32 is riveted on the inner wall of the energy-saving lighting billboard device main body 2 through bolts, the second solar power generation control transmission device 33 is riveted on the inner wall of the second energy-saving lighting billboard transmission case 21 through bolts, the second wind power control inversion circuit transmission mechanism 34 is connected to the inner wall of the energy-saving illumination billboard device main body 2 through bolts in a riveting manner, the first solar power generation control transmission device 30 is provided with a first solar monocrystalline silicon plate 300, a first internal power generation connecting lead 301 and a first power generation photovoltaic cell 302, the first solar monocrystalline silicon plate 300 is connected to the upper surface of the energy-saving illumination billboard device main body 2 through bolts in a riveting manner, the first internal power generation connecting lead 301 is connected between the first solar monocrystalline silicon plate 300 and the energy-saving illumination billboard internal control power box 31, the first power generation cell 302 is connected to the inner wall of the first energy-saving illumination billboard transmission case 20 through bolts in a riveting manner, the first wind power control inversion circuit transmission mechanism 32 is provided with a first wind power control rotating windmill 320, a first traction control transmission small pulley 321, an electro-optic photovoltaic cell 302, A first circuit control transmission pull wire 322, a first circuit control power-on balance support rod 323, a first power-on balance support rod movable rotating shaft 324, a first circuit control power-on metal small round ball 325, a first positive circuit control connecting groove 326, a first reverse circuit control connecting groove 327, a first circuit control transmission power box 328 and a first wind power control connecting lead 329, wherein the first wind power control rotating windmill 320 is connected on the inner wall of the first energy-saving lighting billboard transmission case 20 through threaded engagement, the first pull wire control transmission small pulley 321 is connected above the first circuit control transmission power box 328 through bolt riveting, the first circuit control transmission pull wire 322 is connected between the first wind power control rotating windmill 320 and the first circuit control power-on balance support rod 323, the first circuit control power-on balance support rod 323 is connected on the first power-on balance support rod movable rotating shaft 324 through threaded engagement, the first electrified balance support rod movable rotating shaft 324 is connected to the inner wall of the energy-saving lighting billboard device main body 2 in a riveting mode through bolts, the first circuit control electrified metal small round ball 325 is vertically welded to one end of the first circuit control electrified balance support rod 323, the first positive circuit control connecting groove 326 is embedded above the first circuit control electrified metal small round ball 325, the first reverse circuit control connecting groove 327 is embedded below the first circuit control electrified metal small round ball 325, the first circuit control transmission power box 328 is connected to the inner wall of the energy-saving lighting billboard device main body 2 in a riveting mode through bolts, the first wind power control connecting lead 329 is connected between the first circuit control transmission power box 328 and the energy-saving lighting billboard internal control power box 31, the second solar power generation control transmission device 33 is provided with a second solar monocrystalline silicon plate 330, A second internal power generation connecting wire 331 and a second power generation photovoltaic cell 334, wherein the second solar monocrystalline silicon plate 330 is connected to the upper surface of the main body 2 of the energy-saving lighting billboard device by means of bolt riveting, the second internal power generation connecting wire 331 is connected between the second solar monocrystalline silicon plate 330 and the internal control power box 31 of the energy-saving lighting billboard, the second power generation photovoltaic cell 334 is connected to the inner wall of the transmission case 21 of the second energy-saving lighting billboard by means of bolt riveting, the second wind power control reverse circuit transmission mechanism 34 is provided with a second wind power control rotating windmill 340, a second traction control transmission small pulley 341, a second circuit control transmission traction line 342, a second circuit control electrifying balance support rod 343, a second electric balance support rod movable rotating shaft 344, a second circuit control electrifying metal small sphere 345, a second positive circuit control connection groove 346, a second reverse circuit control connection groove 347, A second circuit control transmission power box 348 and a second wind power control connection wire 349, wherein the second wind power control rotary windmill 340 is connected to the inner wall of the second energy-saving lighting billboard transmission case 21 through threaded engagement, the second traction control transmission small pulley 341 is connected above the second circuit control transmission power box 348 through bolt riveting, the second circuit control transmission traction wire 342 is connected between the second wind power control rotary windmill 340 and a second circuit control electrified balance support rod 343, the second circuit control electrified balance support rod 343 is connected to the second electric balance support rod movable rotating shaft 344 through threaded engagement, the second electric balance support rod movable rotating shaft 344 is connected to the inner wall of the energy-saving lighting billboard device main body 2 through bolt riveting, the second circuit control electrified metal small ball 345 is vertically welded to one end of the second circuit control electrified balance support rod 343, the second positive circuit control connecting groove 346 is embedded above the second circuit control electrified metal small round ball 345, the second inverse circuit control connecting groove 347 is embedded below the second circuit control electrified metal small round ball 345, the second circuit control transmission power box 348 is connected to the inner wall of the energy-saving lighting billboard device main body 2 through bolts in a riveting mode, and the second wind power control connecting lead 349 is connected between the second circuit control transmission power box 348 and the internal control power box 31 of the energy-saving lighting billboard.
When the user supplies power to the energy-saving lighting billboard through the equipment, the wind power in all directions can be used for supplying power effectively, meanwhile, the solar energy is used for supplying power bidirectionally, the stability of electric quantity is guaranteed, the power is supplied continuously, and the condition that the power supply of the energy-saving lighting billboard is insufficient and the normal use is influenced is avoided.
The first light-emitting photovoltaic cell is a device for directly converting solar energy into electric energy.
The invention solves the problem that when the prior art is used, because the outdoor lighting billboard provides the power required by the billboard lighting by means of two renewable energy power generation modes of solar power generation and wind power generation, the outdoor lighting billboard is easily influenced by the change of wind power, the change of weather and cloudy and sunny and the change of day and night, the power supply is not stable enough, and the normal use of the lighting billboard is influenced.
Figure GDA0001672453880000121
In summary, the following steps: when the first circuit control power-on balance supporting rod is made of stainless steel, the firmness of the first circuit control power-on balance supporting rod is strongest, and the corrosion resistance is best, so that the stainless steel is the best choice for the first circuit control power-on balance supporting rod.
While there have been shown and described what are at present considered the fundamental principles and essential features of the invention and its advantages, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (4)

1. The utility model provides an regard energy-conserving illumination bill-board of light wind hydrogen new energy system as power supply, its structure includes energy-conserving illumination bill-board fixed bolster (1), energy-conserving illumination bill-board device main part (2), energy-conserving illumination bill-board internal circuit control drive mechanism (3), energy-conserving illumination bill-board fixed bolster (1) is connected in energy-conserving illumination bill-board device main part (2) below through the bolt riveting, energy-conserving illumination bill-board device main part (2) are connected on energy-conserving illumination bill-board fixed bolster (1) through the bolt riveting, energy-conserving illumination bill-board internal circuit control drive mechanism (3) are connected on energy-conserving illumination bill-board device main part (2) inner wall through the bolt riveting, its characterized in that:
the energy-saving lighting billboard fixing support frame (1) is provided with an energy-saving lighting billboard support device (10) and an energy-saving lighting billboard illuminating lamp support device (11), the energy-saving lighting billboard support device (10) is connected below the energy-saving lighting billboard illuminating lamp support device (11) in a riveting mode through bolts, and the energy-saving lighting billboard illuminating lamp support device (11) is connected to the top of the energy-saving lighting billboard fixing support frame (1) in a riveting mode through bolts;
the energy-saving lighting billboard bracket device (10) is provided with an energy-saving lighting billboard bracket fixing base (100), an energy-saving lighting billboard bracket reinforcing wing plate (101) and an energy-saving lighting billboard bracket supporting main rod (102), wherein the energy-saving lighting billboard bracket fixing base (100) is connected to the bottom of the energy-saving lighting billboard bracket supporting main rod (102) in a riveting mode through bolts, the energy-saving lighting billboard bracket reinforcing wing plate (101) is vertically welded on the outer surface of the energy-saving lighting billboard bracket fixing base (100), and the energy-saving lighting billboard bracket supporting main rod (102) is connected between the energy-saving lighting billboard bracket fixing base (100) and the energy-saving lighting billboard illuminating lamp bracket device (11) in a riveting mode through bolts;
the energy-saving illumination advertising board illuminating lamp support device (11) is provided with an illumination lamp fixing connecting rod (110), an energy-saving illumination lamp (111) and an energy-saving illumination advertising board illuminating lamp support fixing connecting plate (112), the illumination lamp fixing connecting rod (110) is connected to the back of the energy-saving illumination advertising board device main body (2) in a riveting mode through bolts, the energy-saving illumination lamp (111) is electrically connected to one end of the illumination lamp fixing connecting rod (110), and the energy-saving illumination advertising board illuminating lamp support fixing connecting plate (112) is connected between the energy-saving illumination advertising board support supporting main rod (102) and the energy-saving illumination advertising board device main body (2) in a riveting mode through bolts;
energy-conserving illumination bill-board device main part (2) are equipped with first energy-conserving illumination bill-board transmission machine case (20), second energy-conserving illumination bill-board transmission machine case (21), first dustproof ventilation filter screen (22), the dustproof ventilation filter screen (23) of second, energy-conserving illumination bill-board display screen (24), first energy-conserving illumination bill-board transmission machine case (20) vertical welding is in energy-conserving illumination bill-board display screen (24) one side, second energy-conserving illumination bill-board transmission machine case (21) vertical welding is in energy-conserving illumination bill-board display screen (24) opposite side, first dustproof ventilation filter screen (22) inlays and locates on first energy-conserving illumination bill-board transmission machine case (20) surface, the dustproof ventilation filter screen (23) of second inlays and locates on second energy-conserving illumination bill-board transmission machine case (21) surface, energy-conserving illumination bill-board display screen (24) inlays and locates first dustproof ventilation filter screen (22) and the dustproof ventilation filter screen (23) of second ) To (c) to (d);
the energy-saving illumination billboard internal circuit control transmission mechanism (3) is provided with a first solar power generation control transmission device (30), an energy-saving illumination billboard internal control power box (31), a first wind power control reverse circuit transmission mechanism (32), a second solar power generation control transmission device (33) and a second wind power control reverse circuit transmission mechanism (34), the first solar power generation control transmission device (30) is connected to the inner wall of the first energy-saving illumination billboard transmission case (20) in a riveting mode through bolts, the energy-saving illumination billboard internal control power box (31) is embedded on the inner bottom face of the energy-saving illumination billboard device main body (2), the first wind power control reverse circuit transmission mechanism (32) is connected to the inner wall of the energy-saving illumination billboard device main body (2) in a riveting mode through bolts, and the second solar power generation control transmission device (33) is connected to the second energy-saving illumination billboard transmission case (21) in a riveting mode through bolts ) On the inner wall, the second wind power control reverse circuit transmission mechanism (34) is riveted and connected to the inner wall of the energy-saving lighting billboard device main body (2) through bolts;
the first wind power control reverse circuit transmission mechanism (32) is provided with a first wind power control rotating windmill (320), a first traction line control transmission small pulley (321), a first circuit control transmission traction line (322), a first circuit control electrifying balance support rod (323), a first electrifying balance support rod movable rotating shaft (324), a first circuit control electrifying metal small ball (325), a first positive circuit control connecting groove (326), a first negative circuit control connecting groove (327), a first circuit control transmission power supply box (328) and a first wind power control connecting lead (329), the first wind power control rotating windmill (320) is connected to the inner wall of the first energy-saving lighting billboard transmission case (20) through threaded engagement, the first traction line control transmission small pulley (321) is connected above the first circuit control transmission power box (328) in a riveting mode through a bolt;
the first circuit control transmission pull wire (322) is connected between the first wind power control rotating windmill (320) and the first circuit control electrifying balance support rod (323), the first circuit control electrifying balance support rod (323) is connected to the first electrifying balance support rod movable rotating shaft (324) through threaded engagement, and the first electrifying balance support rod movable rotating shaft (324) is connected to the inner wall of the energy-saving lighting billboard device main body (2) through bolt riveting;
the first circuit control electrified metal small round ball (325) is vertically welded at one end of the first circuit control electrified balance support rod (323), the first positive circuit control connecting groove (326) is embedded above the first circuit control electrified metal small round ball (325), and the first reverse circuit control connecting groove (327) is embedded below the first circuit control electrified metal small round ball (325);
the first circuit control transmission power box (328) is connected to the inner wall of the energy-saving lighting billboard device main body (2) in a riveting mode through bolts, and the first wind power control connecting lead (329) is connected between the first circuit control transmission power box (328) and the internal control power box (31) of the energy-saving lighting billboard.
2. The energy-saving lighting billboard using the light, wind and hydrogen new energy system as a power supply according to claim 1, is characterized in that: the first solar power generation control transmission device (30) is provided with a first solar monocrystalline silicon plate (300), a first internal power generation connecting wire (301) and a first power generation photovoltaic cell (302), the first solar monocrystalline silicon plate (300) is connected to the upper surface of the energy-saving lighting billboard device main body (2) in a riveting mode through bolts, the first internal power generation connecting wire (301) is connected between the first solar monocrystalline silicon plate (300) and the energy-saving lighting billboard internal control power box (31), and the first power generation photovoltaic cell (302) is connected to the inner wall of the first energy-saving lighting billboard transmission case (20) in a riveting mode through bolts.
3. The energy-saving lighting billboard using the light, wind and hydrogen new energy system as a power supply according to claim 1, is characterized in that: the second solar power generation control transmission device (33) is provided with a second solar single-crystal silicon plate (330), a second internal power generation connecting wire (331) and a second power generation photovoltaic cell (334), the second solar single-crystal silicon plate (330) is connected to the upper surface of the energy-saving lighting billboard device main body (2) in a riveting mode through bolts, the second internal power generation connecting wire (331) is connected between the second solar single-crystal silicon plate (330) and the energy-saving lighting billboard internal control power box (31), and the second power generation photovoltaic cell (334) is connected to the inner wall of the second energy-saving lighting billboard transmission case (21) in a riveting mode through bolts.
4. The energy-saving lighting billboard using the light, wind and hydrogen new energy system as a power supply according to claim 1, is characterized in that: the second wind power control reversal circuit transmission mechanism (34) is provided with a second wind power control rotating windmill (340), a second traction line control transmission small pulley (341), a second circuit control transmission traction line (342), a second circuit control electrifying balance support rod (343), a second electrifying balance support rod movable rotating shaft (344), a second circuit control electrifying metal small ball (345), a second positive circuit control connecting groove (346), a second reverse circuit control connecting groove (347), a second circuit control transmission power supply box (348) and a second wind power control connecting wire (349), the second wind power control rotary windmill (340) is connected to the inner wall of the second energy-saving lighting billboard transmission case (21) through threaded engagement, the second traction line control transmission small pulley (341) is riveted and connected above the second circuit control transmission power box (348) through a bolt;
the second circuit control transmission traction wire (342) is connected between the second wind power control rotating windmill (340) and the second circuit control electrifying balance support rod (343), the second circuit control electrifying balance support rod (343) is connected to the second electrifying balance support rod movable rotating shaft (344) through threaded engagement, and the second electrifying balance support rod movable rotating shaft (344) is connected to the inner wall of the energy-saving lighting billboard device main body (2) through bolts in a riveting mode;
the energy-saving lighting billboard is characterized in that the second circuit control power-on small metal round ball (345) is vertically welded at one end of the second circuit control power-on balance support rod (343), the second positive circuit control connecting groove (346) is embedded above the second circuit control power-on small metal round ball (345), the second reverse circuit control connecting groove (347) is embedded below the second circuit control power-on small metal round ball (345), the second circuit control transmission power supply box (348) is connected to the inner wall of the energy-saving lighting billboard device main body (2) in a riveting mode through bolts, and the second wind power control connecting wire (349) is connected between the second circuit control transmission power supply box (348) and the internal control power supply box (31) of the energy-saving lighting billboard.
CN201810312935.1A 2018-04-09 2018-04-09 Energy-saving lighting billboard taking light, wind and hydrogen new energy system as power supply Active CN108364569B (en)

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CN201810312935.1A CN108364569B (en) 2018-04-09 2018-04-09 Energy-saving lighting billboard taking light, wind and hydrogen new energy system as power supply

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US8810191B2 (en) * 2007-05-08 2014-08-19 David Maldonado Solar sign illumination system
CN102074174A (en) * 2010-12-15 2011-05-25 无锡同春新能源科技有限公司 Energy-saving lighting billboard using light, wind and hydrogen new energy system as power supply
CN203366672U (en) * 2013-02-25 2013-12-25 盖志武 Strong wind resistance street lamp billboard
TWM462425U (en) * 2013-05-31 2013-09-21 Ceramate Technical Co Ltd Self-powered type stop sign
CN204557967U (en) * 2015-04-21 2015-08-12 何晓芬 Advertisement cabinet
CN106764821A (en) * 2016-12-06 2017-05-31 江苏时新景观照明有限公司 A kind of economic and environment-friendly LED street lamp
CN106548701A (en) * 2016-12-09 2017-03-29 徐玉炜 It is a kind of can auto Deformation signpost

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