CN209103159U - Photovoltaic power generation electric power collaborative design system - Google Patents

Photovoltaic power generation electric power collaborative design system Download PDF

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Publication number
CN209103159U
CN209103159U CN201821901074.2U CN201821901074U CN209103159U CN 209103159 U CN209103159 U CN 209103159U CN 201821901074 U CN201821901074 U CN 201821901074U CN 209103159 U CN209103159 U CN 209103159U
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CN
China
Prior art keywords
bearing box
main bearing
main
solar panel
power generation
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201821901074.2U
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Chinese (zh)
Inventor
赵明明
贾利杰
魏鹏
杨禄军
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Shaanxi Jiming Electric Power Engineering Design Consulting Co Ltd
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Shaanxi Jiming Electric Power Engineering Design Consulting Co Ltd
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Application filed by Shaanxi Jiming Electric Power Engineering Design Consulting Co Ltd filed Critical Shaanxi Jiming Electric Power Engineering Design Consulting Co Ltd
Priority to CN201821901074.2U priority Critical patent/CN209103159U/en
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Publication of CN209103159U publication Critical patent/CN209103159U/en
Expired - Fee Related legal-status Critical Current
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • Y02E10/56Power conversion systems, e.g. maximum power point trackers

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Abstract

The utility model relates to photovoltaic generating system technical fields, disclose photovoltaic power generation electric power collaborative design system, including main bearing box, battery and main reaction processor are equipped in main bearing box, main carrying box outer wall is equipped with charging jack, battery and charging jack are electrically connected in main reaction processor, wherein, main bearing box top movable is connected with solar panel, solar panel is electrically connected in main reaction processor, solar panel is hinged by flexural pivot and main bearing box, the driving device of driving flexural pivot rotation is equipped in main bearing box, solar panel is equipped with photovoltaic sensor, photovoltaic sensor and driving device are electrically connected in main reaction processor, so as to persistently be tracked to solar energy orientation, farthest improve the utilization rate of solar energy, and structure is simple, adjustment process facilitates convenient.

Description

Photovoltaic power generation electric power collaborative design system
Technical field
The utility model relates to photovoltaic generating system technical field more particularly to photovoltaic power generation electric power collaborative design systems.
Background technique
Photovoltaic power generation is the photovoltaic effect using interface and luminous energy is directly translated into a kind of skill of electric energy Art, is one kind of solar power generation, and the electric energy of generation is stored in variable-frequency power sources and is transported to user.
Chinese utility model patent if Authorization Notice No. is CN207426797U discloses a kind of photovoltaic power generation electric power association Same designing system, including device noumenon, described device ontology bottom end quadrangle are set there are four support nail, and described device ontology and branch Nail closely welds, and display screen is equipped with above described device ontology front end, and described device ontology and display screen are electrically connected, institute It states positive middle part on the right side of device noumenon and is equipped with temperature control display instrument, and described device ontology is fixedly connected with temperature control display instrument, this kind of light The sun tracker that volt generation power collaborative design system is equipped with by device noumenon, 1 year four seasons spring, summer, autumn and winter, every light Rise sunset, the lighting angle of the sun at every moment all changing, solar panels can the moment face sun, enable battery array Enough exquisite absorption luminous energy.
But with no specific disclosure of the specific structure of sun tracker in technical solution disclosed in above-mentioned utility model, and Authorization Notice No. is that the Chinese utility model patent of CN205232127U discloses a kind of solar energy that can efficiently utilize solar energy Tracking system comprising main undertaking case, battery, horizontal drive case, perpendicular drive case, photovoltaic sensor and solar battery Plate is equipped with horizontal drive case at the top of the main undertaking case, is also equipped with perpendicular drive case at the top of the horizontal drive case, The utility model can efficiently utilize the solar tracking system of solar energy, be bi-directional drive type tracking system, pass through the water of installation Flat driving box and perpendicular drive case effectively can carry out comprehensive steering to solar panel and adjust, make solar energy with Track is more accurate, and solar panel is enabled to be constantly in plumbness with sunray, greatly improves solar energy Utilization rate.
But its adjustment process of the bi-directional drive type tracking system of above-mentioned utility model disclosure is relatively complicated, needs to cooperate with Horizontal drive case and perpendicular drive case cooperation are adjusted.
Utility model content
The purpose of this utility model is to provide a kind of photovoltaic power generation electric power collaborative design systems, effectively to the sun Under the premise of energy solar panel carries out comprehensive steering adjusting, simplify structure, adjustment process facilitates convenient.
Above-mentioned photovoltaic power generation electric power collaborative design system is achieved through the following technical solutions:
Photovoltaic power generation electric power collaborative design system, including main bearing box, the main bearing box is interior to be equipped with battery and master instead Processor is answered, the main carrying box outer wall is equipped with charging jack, and the battery and the charging jack are electrically connected in the master Reaction treatment device, wherein the main bearing box top movable is connected with solar panel, and the solar panel is electrically connected in The main reaction processor, the solar panel is hinged by flexural pivot and the main bearing box, sets in the main bearing box There is the driving device for driving the flexural pivot rotation, the solar panel is equipped with photovoltaic sensor, the photovoltaic sensor And the driving device is electrically connected in the main reaction processor.
By using above-mentioned technical proposal, photovoltaic sensor carries out duration monitoring to sunray, and information is fed back To main reaction processor, control driving device movement after the information analysis processing that main reaction processor feeds back photovoltaic sensor, To drive flexural pivot to rotate, to drive solar panel to rotate, to change its angle, so that solar panel be enable to hold It is continuous that solar energy orientation is tracked, to guarantee the solar panel face sun always, farthest improve solar energy Utilization rate, meanwhile, by adopting the above technical scheme, by driving device drive flexural pivot rotation, solar battery can be driven Plate all-direction rotation changes its angle, and structure is simple, and adjustment process facilitates convenient.
In some embodiments, the flexural pivot includes bulb and the connecting rod for being connected to the bulb two sides, two sides connecting rod It is same radially positioned at the bulb;The main bearing box roof offers the card interface with bulb cooperation, the bulb Be embedded in the card interface, and two sides connecting rod is located inside and outside the main carrying box body, the driving device with Connecting rod positioned at the main bearing box box inside connects, described in the interlinking lever end connection on the outside of the main carrying box body Solar panel.
By using above-mentioned technical proposal, driving device driving flexural pivot is located at the end of the connecting rod of main bearing box box inside Displacement is formed, in the process, the bulb of connection in conjunction rotates in the card interface of main bearing box roof, to drive too Positive energy solar panel rotation, to change its angle.
In some embodiments, waterproof washer is equipped between the card interface and the bulb.
By using above-mentioned technical proposal, waterproof washer can effectively prevent rainwater to seep from the gap of card interface and bulb It becomes owner of in carrying box body.
In some embodiments, the driving device includes the index dial in horizontal plane, is located at the main carrying Interlinking lever end on the inside of box body, which is articulated with disk on the index dial by multi-directional ball axis, to be deviateed at center location, and described point Scale is electrically connected in the main reaction processor, and the connecting rod positioned at the main bearing box box inside is telescopic rod.
By using above-mentioned technical proposal, index dial is in the horizontal plane using Pivot Point Center as center rotation, therefore, in its turn Drive therewith that hinged and with Telescopic flexural pivot is opened up by multi-directional ball axis with main bearing box roof in dynamic process Card interface be fulcrum rotation, thus drive solar panel one horizontal by fixed angle state under with card interface for circle Heart pitch of the laps rotation, to change its direction.
In some embodiments, the index dial includes intermeshing worm gear and worm screw, and the worm gear is horizontally disposed, And top overlapping is fixed with terminal pad, disk deviates the hinged connecting rod at center location, the worm screw in the terminal pad A motor is connected, the motor is electrically connected in the main reaction processor.
By using above-mentioned technical proposal, the rotation of motor driven worm screw, to drive the worm gear rotation being engaged with, then Realize the rotation of index dial;The motor of driving worm screw rotation is connect with main reaction processor, and therefore, photovoltaic sensor is to sunlight Line carries out duration monitoring, after information is fed back to main reaction processor, letter that main reaction processor feeds back photovoltaic sensor Control motor rotates after ceasing analysis processing, so that index dial be driven to rotate.
In some embodiments, the driving device further includes the driving cylinder above the index dial;Described ten thousand It is slidably connected on the index dial to ball axis, and its sliding trace is located at the index dial radially, the driving cylinder and institute Multi-directional ball axis connection is stated, drives the multi-directional ball axis along the index dial radial slippage, it is anti-that the driving cylinder is electrically connected in the master Answer processor.
During index dial rotates and drives solar panel rotation, solar panel is merely capable of in one and water Plane is in rotate under fixed angle state by center of circle pitch of the laps of card interface, and can not change the angle of itself and horizontal plane, and pass through By adopting the above technical scheme, drive multi-directional ball axis along the index dial radial slippage when driving cylinder stretches, and in multi-directional ball axis In mobile process, flexural pivot can be equally driven to rotate using the card interface that main bearing box roof opens up as fulcrum, to drive the sun Energy solar panel rotation, to change its angle with horizontal plane, to reach the adjustment to each angle direction of solar panel.
In some embodiments, the main bearing box top side wall offers radiator window, is equipped in the main bearing box Cooling fan, the cooling fan are located at the heat dissipation window position, described to state main bearing box sidewall bottom and offer air inlet.
By using above-mentioned technical proposal, risen according to hot-air, the principle of cold air decline, in main bearing box inner top One cooling fan is set, opens up air inlet in main bearing box bottom to realize the inner-outer circulation of air, is held to reach master Carry the effect radiated in case.
In some embodiments, the main bearing box is equipped with display screen, and the display screen is electrically connected in the main reaction Processor.
By using above-mentioned technical proposal, display screen is for realizing human-computer interaction, convenient for observing charge volume, the electricity of the system Measure the information such as usage amount.
In conclusion photovoltaic power generation electric power collaborative design system provided by the utility model is compared with prior art, have Following advantages:
1, the separate of universal rotational can be realized using flexural pivot, realizes the change of solar panel direction and angle, To enabling solar panel persistently to track to solar energy orientation, to guarantee solar panel, face is too always Sun farthest improves the utilization rate of solar energy, and its structure is simple, and adjustment process facilitates convenient;
2, by the way that a cooling fan is arranged in main bearing box inner top, air inlet is opened up in main bearing box bottom, utilizes heat Air rises, the principle of cold air decline realizes the inner-outer circulation of air, to have the function that heat dissipation in main bearing box.
Detailed description of the invention
Fig. 1 is the part configuration schematic diagram of photovoltaic power generation electric power collaborative design system provided by the utility model.
Fig. 2 is partial schematic diagram of the photovoltaic power generation electric power collaborative design system shown in FIG. 1 along A-A sectional view.
Fig. 3 is that driving device and the connection structure of flexural pivot are illustrated in photovoltaic power generation electric power collaborative design system shown in FIG. 1 Figure.
Appended drawing reference: 1, main bearing box;110, accommodating chamber;11, battery;12, main reaction processor;13, charging jack; 14, solar panel;141, flexural pivot;142, driving device;140, photovoltaic sensor;1410, bulb;1411, connecting rod;101, Card interface;1421, index dial;1420, multi-directional ball axis;1422, turbine;1423, worm screw;1424, terminal pad;1425, motor; 1426, driving cylinder;1427, sliding slot;15, radiator window;16, cooling fan;17, air inlet;18, display screen.
Specific embodiment
Below in conjunction with attached drawing, the technical solution of the utility model embodiment is described in detail.
As shown in Figure 1, the photovoltaic power generation electric power collaborative design system that the utility model discloses, including main bearing box 1, master hold It carries 1 top movable of case and is connected with solar panel 14, solar panel 14 can be realized multi-faceted adjusting.
Specifically, such as scheming as shown in Figure 1, include that accommodating chamber 110 is connected to main bearing box 1 at the top of main bearing box 1 Shown in 2, solar panel 14 is hinged by flexural pivot 141 and 110 roof of accommodating chamber, and flexural pivot 141 includes bulb 1410 and connection Connecting rod 1411 in 1410 two sides of bulb, it is same radially that two sides connecting rod 1411 is located at bulb 1410;110 roof of accommodating chamber opens up There is the card interface 101 cooperated with bulb 1410, bulb 1410 is embedded in card interface 101, facilitates bulb 1410 in card interface 101 It is inside freely rotated, the connecting rod 1411 of 1410 two sides of bulb is located inside and outside accommodating chamber 110, is located at 110 outside of accommodating chamber End of the connecting rod 1411 far from bulb 1410 be fixedly connected with 14 bottom center of solar panel, be located at accommodating chamber 110 in The connecting rod 1411 of side connects a driving device 142 far from the end of bulb 1410, and driving device 142 is located at accommodating chamber for driving The connecting rod 1411 of 110 insides is that fulcrum forms displacement with card interface 101.
As shown in Figures 2 and 3, driving device 142 includes the index dial 1421 in horizontal plane, and index dial 1421 is with it Center be axis rotation be connected in accommodating chamber 110, as shown in figure 3, index dial 1421 include intermeshing turbine 1422 and Worm screw 1423, turbine 1422 is horizontally disposed, and top overlapping is fixed with terminal pad 1424, and worm screw 1423 connects a motor 1425, Motor 1425 drives worm screw 1423 to rotate, so that the turbine 1422 being engaged be driven to rotate.As shown in Figures 2 and 3, terminal pad Disk connects connecting rod 1411 on 1424, and the connecting rod 1411 positioned at 110 inside of accommodating chamber connects one far from the end of bulb 1410 Multi-directional ball axis 1420, multi-directional ball axis 1420 are slidably connected in terminal pad 1424 on disk, the sliding rail of multi-directional ball axis 1420 Mark is located at terminal pad 1424 radially, and one end end endpoint of sliding trace is located at the center location of terminal pad 1424.In addition, position Connecting rod 1411 on the inside of 110 internal box of accommodating chamber is telescopic rod.
Therefore, index dial 1421 is in the horizontal plane using Pivot Point Center as center rotation, therefore, band during its rotation It is dynamic that by multi-directional ball axis 1420, hinged and with Telescopic flexural pivot 141 with main card interface 101 is that fulcrum rotates therewith, from And drive solar panel 14 one horizontal by fixed angle state under with card interface 101 for the center of circle pitch of the laps rotation, from And change its direction;And multi-directional ball axis 1420 and terminal pad 1424 are slidably connected, in multi-directional ball axis 1420 along terminal pad 1424 When radial slippage, it can equally drive flexural pivot 141 with card interface 101 for fulcrum rotation, so that solar panel 14 is driven to rotate, To change its angle with horizontal plane.To sum up, to reach the adjustment to each angle direction of solar panel 14.
Multi-directional ball axis 1420 along 1424 radial slippage of terminal pad be by being realized with flowering structure, as shown in Figures 2 and 3, Driving device 142 further includes the driving cylinder 1426 positioned at 1424 top of terminal pad, and the upper disc of terminal pad 1424 is radially opened Equipped with sliding slot 1427, and one end end of sliding slot 1427 is located at the center location of terminal pad 1424, and the sliding of multi-directional ball axis 1420 connects It is connected in sliding slot 1427, driving cylinder 1426 is connect with multi-directional ball axis 1420, to drive multi-directional ball axis 1420 along index dial 1421 Radial slippage.
As shown in figure 3, being equipped with battery 11 and main reaction processor 12 in main bearing box 1, set on solar panel 14 There is photovoltaic sensor 140, solar panel 14, photovoltaic sensor 140 and battery 11 are electrically connected in main reaction processor 12, Above-mentioned motor 1425 and driving cylinder 1426 are also electrically connected in main reaction processor 12,14 electricity of battery 11 and solar panel Even.Therefore, photovoltaic sensor 140 carries out duration monitoring to sunray, and information is fed back to main reaction processor 12, main Motor 1425 is controlled after the information analysis processing that reaction treatment device 12 feeds back photovoltaic sensor 140 or driving cylinder 1426 acts, To drive flexural pivot 141 to rotate, to drive solar panel 14 to rotate, to change its angle, to make solar panel 14 can persistently track solar energy orientation, to guarantee the face sun always of solar panel 14, farthest Improve the utilization rate of solar energy.
Rainwater penetrates into accommodating chamber 110 in order to prevent, as shown in Fig. 2, being equipped with waterproof between card interface 101 and bulb 1410 Washer (not shown).
As shown in Figure 1, main 1 outer wall of bearing box is equipped with charging jack 13, charging jack 13 is electrically connected in main reaction processor 12, To realize the charging of external equipment;In addition, display screen 18 is electrically connected in master as shown in Figure 1, main bearing box 1 is equipped with display screen 18 Reaction treatment device 12, display screen 18 are implemented for human-computer interaction, convenient for charge volume, the electricity usage amount etc. for observing the system Information.
In order to accelerate the heat dissipation effect of main bearing box 1, guarantee in main 1 cabinet of bearing box to the normal work of component, such as Fig. 1 Shown, main 1 top side wall of bearing box offers radiator window 15, is equipped with cooling fan 16 in main bearing box 1, cooling fan 16 is located at At 15 position of radiator window, states main 1 sidewall bottom of bearing box and offer air inlet 17.Therefore, risen using hot-air, under cold air The principle of drop, realizes the inner-outer circulation of air, to have the function that heat dissipation in main bearing box 1.
Working principle:
Photovoltaic sensor 140 carries out duration monitoring to sunray, and information is fed back to main reaction processor 12, main Motor 1425 is controlled after the information analysis processing that reaction treatment device 12 feeds back photovoltaic sensor 140 or driving cylinder 1426 acts, To drive flexural pivot 141 to rotate.That is: motor 1425 is drivingly connected 1424 rotation of disk, drives during its rotation and passes through therewith Multi-directional ball axis 1420 is hinged and flexural pivot 141 of with Telescopic with card interface 101 is that fulcrum rotates, to drive solar energy Solar panel 14 one horizontal by fixed angle state under using card interface as center of circle pitch of the laps rotate;And it is rotated in terminal pad 1424 During, solar panel 14 be merely capable of one horizontal by fixed angle state under with card interface 101 for the center of circle Pitch of the laps rotation, and the angle of itself and horizontal plane can not be changed, therefore, at the angle for needing to change solar panel 14 Yu horizontal plane When spending, driving cylinder 1426 is flexible to drive multi-directional ball axis 1420 along 1424 radial slippage of terminal pad, and mobile in multi-directional ball axis 1420 During, it can equally drive flexural pivot 141 with card interface 101 for fulcrum rotation, so that solar panel 14 is driven to rotate, with Change its angle with horizontal plane, to reach the adjustment to each angle direction of solar panel, makes solar panel 14 Persistently solar energy orientation can be tracked, to guarantee the face sun always of solar panel 14, farthest be mentioned The utilization rate of high solar.
The above is only the preferred embodiment of the utility model, and the protection scope of the utility model is not limited merely to Above-described embodiment, technical solution belonging to the idea of the present invention belong to the protection scope of the utility model.It should refer to Out, for those skilled in the art, it is without departing from the principle of the utility model it is several improvement and Retouching, these improvements and modifications also should be regarded as the protection scope of the utility model.

Claims (8)

1. photovoltaic power generation electric power collaborative design system, including main bearing box (1), the main bearing box (1) is interior to be equipped with battery (11) and main reaction processor (12), main bearing box (1) outer wall are equipped with charging jack (13), the battery (11) and institute It states charging jack (13) and is electrically connected in the main reaction processor (12), which is characterized in that main bearing box (1) top movable Be connected with solar panel (14), the solar panel (14) is electrically connected in the main reaction processor (12), it is described too Positive energy solar panel (14) passes through flexural pivot (141) and the main bearing box (1) hingedly, is equipped in the main bearing box (1) and drives institute The driving device (142) of flexural pivot (141) rotation is stated, the solar panel (14) is equipped with photovoltaic sensor (140), described Photovoltaic sensor (140) and the driving device (142) are electrically connected in the main reaction processor (12).
2. photovoltaic power generation electric power collaborative design system according to claim 1, which is characterized in that flexural pivot (141) packet It includes bulb (1410) and is connected to the connecting rod (1411) of the bulb (1410) two sides, two sides connecting rod (1411) is located at the bulb (1410) it is same radially;Main bearing box (1) roof offers the card interface (101) with the bulb (1410) cooperation, The bulb (1410) is embedded in the card interface (101), and two sides connecting rod (1411) is located at the main bearing box (1) Inside and outside cabinet, the driving device (142) connect with the connecting rod (1411) for being located at main bearing box (1) box inside, Connecting rod (1411) end on the outside of main bearing box (1) cabinet connects the solar panel (14).
3. photovoltaic power generation electric power collaborative design system according to claim 2, which is characterized in that the card interface (101) Waterproof washer is equipped between the bulb (1410).
4. photovoltaic power generation electric power collaborative design system according to claim 2, which is characterized in that the driving device It (142) include the index dial (1421) in horizontal plane, the connecting rod (1411) for being located at main bearing box (1) box inside is held Portion is articulated with disk on the index dial (1421) by multi-directional ball axis (1420) and deviates at center location, the index dial (1421) it is electrically connected in the main reaction processor (12), the connecting rod (1411) for being located at main bearing box (1) box inside is to stretch Contracting bar.
5. photovoltaic power generation electric power collaborative design system according to claim 4, which is characterized in that the index dial (1421) Including intermeshing worm gear (1422) and worm screw (1423), the worm gear (1422) is horizontally disposed, and top overlapping is fixed with Terminal pad (1424), disk deviates at center location the hingedly connecting rod (1411), the snail on the terminal pad (1424) Bar (1423) connects a motor (1425), and the motor (1425) is electrically connected in the main reaction processor (12).
6. photovoltaic power generation electric power collaborative design system according to claim 4, which is characterized in that the driving device It (142) further include the driving cylinder (1426) being located above the index dial (1421);The multi-directional ball axis (1420) is slidably connected In on the index dial (1421), and its sliding trace is located at the index dial (1421) radially, the driving cylinder (1426) It is connect with the multi-directional ball axis (1420), drives the multi-directional ball axis (1420) along the index dial (1421) radial slippage, institute It states driving cylinder (1426) and is electrically connected in the main reaction processor (12).
7. photovoltaic power generation electric power collaborative design system according to claim 1, which is characterized in that the main bearing box (1) Top side wall offers radiator window (15), is equipped with cooling fan (16) in the main bearing box (1), cooling fan (16) position At the radiator window (15) position, described main bearing box (1) sidewall bottom of stating offers air inlet (17).
8. photovoltaic power generation electric power collaborative design system according to claim 1, which is characterized in that the main bearing box (1) It is equipped with display screen (18), the display screen (18) is electrically connected in the main reaction processor (12).
CN201821901074.2U 2018-11-17 2018-11-17 Photovoltaic power generation electric power collaborative design system Expired - Fee Related CN209103159U (en)

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Application Number Priority Date Filing Date Title
CN201821901074.2U CN209103159U (en) 2018-11-17 2018-11-17 Photovoltaic power generation electric power collaborative design system

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Application Number Priority Date Filing Date Title
CN201821901074.2U CN209103159U (en) 2018-11-17 2018-11-17 Photovoltaic power generation electric power collaborative design system

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110708006A (en) * 2019-10-30 2020-01-17 徐州格利尔科技有限公司 Novel household photovoltaic power generation device
CN111510059A (en) * 2020-04-23 2020-08-07 无锡锡晟建设有限公司 Energy-saving building capable of fully utilizing solar energy
CN116683853A (en) * 2023-06-06 2023-09-01 紫泉能源技术股份有限公司 Comprehensive utilization system for photovoltaic energy

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110708006A (en) * 2019-10-30 2020-01-17 徐州格利尔科技有限公司 Novel household photovoltaic power generation device
CN111510059A (en) * 2020-04-23 2020-08-07 无锡锡晟建设有限公司 Energy-saving building capable of fully utilizing solar energy
CN111510059B (en) * 2020-04-23 2021-07-23 无锡锡晟建设有限公司 Energy-saving building capable of fully utilizing solar energy
CN116683853A (en) * 2023-06-06 2023-09-01 紫泉能源技术股份有限公司 Comprehensive utilization system for photovoltaic energy
CN116683853B (en) * 2023-06-06 2023-12-15 紫泉能源技术股份有限公司 Comprehensive utilization system for photovoltaic energy

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Granted publication date: 20190712

Termination date: 20211117