CN208608952U - Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship - Google Patents

Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship Download PDF

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Publication number
CN208608952U
CN208608952U CN201821062003.8U CN201821062003U CN208608952U CN 208608952 U CN208608952 U CN 208608952U CN 201821062003 U CN201821062003 U CN 201821062003U CN 208608952 U CN208608952 U CN 208608952U
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CN
China
Prior art keywords
photovoltaic
generation unit
bracket
bar
power generation
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Active
Application number
CN201821062003.8U
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Chinese (zh)
Inventor
张效源
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Eastern Han New Energy Automotive Technology Co Ltd
Donghan New Energy Automotive Technology Co Ltd
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Eastern Han New Energy Automotive Technology Co Ltd
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Priority to CN201821062003.8U priority Critical patent/CN208608952U/en
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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

Abstract

The utility model discloses a kind of photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ships, wherein the power generator includes driving assembly, supporting mechanism and at least two layers of photovoltaic generation unit, the photovoltaic generation unit that at least two layers of drive of driving assembly driving supporting mechanism forms after collapsing and collapses structure, to enable the photovoltaic generation unit progress photoelectric conversion for receiving illumination;Deployed configuration is formed after the photovoltaic generation unit expansion that at least two layers of drive of driving assembly driving supporting mechanism, carries out photoelectric conversion to enable the photovoltaic generation unit for receiving illumination.Photovoltaic power generation apparatus provided by the utility model, at least two layers of photovoltaic generation unit expansion is driven by driving assembly, expand the photoelectric conversion area of photovoltaic generation unit, and at least two layers of photovoltaic generation unit is driven to collapse by driving assembly, the occupied space for having saved the power generator avoids the interference of itself and peripheral parts facility.

Description

Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship
Technical field
The utility model relates to photovoltaic cell technical field more particularly to a kind of photovoltaic power generation apparatus, photovoltaic vehicle and light Fu Chuan.
Background technique
New-energy electric vehicle charging rate is slow, power consumption is fast, and usage experience is poor.For this technical problem, in roof Installing photovoltaic cell additional is common practice.Solution in the prior art is the photovoltaic electric for being designed to glass sunroof to generate electricity Pond, such as the integrated photovoltaic cells chip in skylight, but this mode can make photovoltaic cell be limited to day window ara and surface The barrier of glass, generated energy are lower.
Utility model content
The purpose of the utility model is to provide a kind of photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ships, above-mentioned existing to solve There is the problems in technology, expand photovoltaic skylight generating area, promotes generated energy.
The utility model provides a kind of photovoltaic power generation apparatus, wherein includes:
Driving assembly, supporting mechanism and at least two layers of photovoltaic generation unit;
At least two layers of the photovoltaic generation unit is arranged on the supporting mechanism;
The driving component drives the supporting mechanism that at least two layers of the photovoltaic generation unit is driven to collapse, and is formed and is received Hold together structure, so that the photovoltaic generation unit for receiving illumination carries out photoelectric conversion;
The driving component drives the supporting mechanism to drive at least two layers of the photovoltaic generation unit expansion, forms exhibition Opening structure, so that the photovoltaic generation unit for receiving illumination carries out photoelectric conversion.
Photovoltaic power generation apparatus as described above, wherein preferably, the supporting mechanism includes link assembly and bracket, The link assembly includes input terminal and output end;
The driving end of the driving component is connected with the input terminal of the link assembly;
The output end of the link assembly is connected with the bracket;
At least two layers of the photovoltaic generation unit is arranged on the bracket.
Photovoltaic power generation apparatus as described above, wherein preferably, the bracket includes pedestal and clamping plate, the pedestal It is pivotally connected with the link assembly, on the base, the photovoltaic generation unit is fixed on the clamping plate Boards wall.
Photovoltaic power generation apparatus as described above, wherein preferably, every layer of at least two layers of the photovoltaic generation unit Photovoltaic generation unit is slidably mounted on the bracket, so that the photovoltaic generation unit can be laterally sliding along the bracket It is dynamic.
Photovoltaic power generation apparatus as described above, wherein preferably, the output end of the link assembly and the bracket pivot It connects.
Photovoltaic power generation apparatus as described above, wherein preferably, the link assembly further include the first bar, the second bar, Third bar and the 4th bar;
The bracket is two layers, and two layers of bracket is respectively the first bracket and the second bracket;
The first end of first bar is the input terminal of the link assembly, the second end of first bar and described second The first end of bar is pivotally connected;
The middle part of second bar is used to be hinged on the fixture that can be arranged on a vehicle, second bar Second end and first bracket are pivotally connected;
The first end of the third bar is hinged on the fixture, the middle part of the third bar and the first bracket pivot It connects, the second end of the third bar and second bracket are pivotally connected;
The first end of 4th bar and first bracket are pivotally connected, the second end of the 4th bar and second bracket Pivot joint.
Photovoltaic power generation apparatus as described above, wherein preferably, the third bar includes casing and push rod;
The push rod is telescopically disposed in described sleeve pipe;
One end and the fixture in described sleeve pipe far from the push rod is hinged;
Intermediate position and first bracket on the push rod are pivotally connected;
One end and second bracket on the push rod far from described sleeve pipe are pivotally connected.
Photovoltaic power generation apparatus as described above, wherein preferably, be all provided on first bracket and second bracket It is equipped with motor, gear and rack gear;
The output shaft of the motor is connected with the gear, and the gear is engaged with the rack gear;
The photovoltaic generation unit is arranged on the rack gear.
Photovoltaic power generation apparatus as described above, wherein preferably, the fixture is that can be arranged on a vehicle Pedestal, be also equipped with photovoltaic generation unit on the pedestal.
Photovoltaic power generation apparatus as described above, wherein preferably, the fixture is the ontology of the vehicles, described Photovoltaic generation unit is also equipped on ontology.
Photovoltaic power generation apparatus as described above, wherein preferably, the driving component is cylinder, and the cylinder includes Cylinder body and cylinder rod;
The cylinder body is fixed on fixture;
The driving end of the cylinder rod is connected with the input terminal of the link assembly.
Photovoltaic power generation apparatus as described above, wherein preferably, the driving component includes driving motor, driving cog Wheel and driving rack;
The output shaft of the transmission gear and the driving motor is sequentially connected, the transmission gear and the driving rack Engagement, the driving rack are connected with the link assembly.
Photovoltaic power generation apparatus as described above, wherein further include light detection means, for will test preferably Luminance signal be sent to the driving component so that the driving component drives supporting mechanism movement.
The utility model additionally provides a kind of photovoltaic vehicle, including vehicle body, wherein further includes that the utility model provides Photovoltaic power generation apparatus, the driving component be arranged on the vehicle body.
Photovoltaic vehicle as described above, wherein preferably, the vehicle of the vehicle body is arranged in the driving component On ceiling.
The utility model additionally provides a kind of photovoltaic ship, including ship ontology, wherein further includes light provided by the utility model Power generator is lied prostrate, the driving component is arranged on the ship ontology.
Photovoltaic ship as described above, wherein preferably, the ship ceiling of the ship ontology is arranged in the driving component On.
Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship provided by the utility model pass through driving assembly driving at least two The photovoltaic generation unit expansion of layer, expands the photoelectric conversion area of photovoltaic generation unit, improves the efficiency of photoelectric conversion, and It drives at least two layers of photovoltaic generation unit to collapse by driving assembly, has saved the occupied space of the power generator, avoided The interference of itself and peripheral parts facility.
Detailed description of the invention
Specific embodiment of the present utility model is described in further detail with reference to the accompanying drawing.
Fig. 1 is the state diagram of photovoltaic power generation apparatus provided by the embodiment of the utility model upon deployment;
Fig. 2 is state diagram of the photovoltaic power generation apparatus provided by the embodiment of the utility model when collapsing;
Fig. 3 is the state diagram of photovoltaic generation unit within the carrier.
Description of symbols:
100- pedestal 200- driving assembly the first bar of 300-
400- the second bar 500- the first bracket 510- through-hole
520- opening the 4th bar of 600- third bar 700-
800- the second bracket 900- photovoltaic generation unit
Specific embodiment
The embodiments of the present invention are described below in detail, examples of the embodiments are shown in the accompanying drawings, wherein from beginning Same or similar element or element with the same or similar functions are indicated to same or similar label eventually.Below by ginseng The embodiment for examining attached drawing description is exemplary, and is only used for explaining the utility model, and cannot be construed to the utility model Limitation.
Referring to Fig. 1 and Fig. 2, the utility model embodiment provides a kind of photovoltaic power generation apparatus (hereinafter referred to as Power generator) comprising (supporting mechanism in the present embodiment can be by the first bar 300, for driving assembly 200, supporting mechanism Two bars 400, third bar 600, the 4th bar 700 and the first bracket 500 and the second bracket 800 composition, specific described below) At least two layers of photovoltaic generation unit, at least two layers of photovoltaic generation unit are arranged on supporting mechanism, and driving assembly 200 drives Dynamic at least two layers of supporting mechanism drive of photovoltaic generation unit forms gathering mechanism after collapsing, namely forms longitudinal lamination (such as Fig. 1 With visual angle shown in Fig. 2), photoelectric conversion is carried out to enable the photovoltaic generation unit for receiving illumination;The driving of driving assembly 200 drives Deployed configuration is formed after at least two layers of photovoltaic generation unit expansion, namely forms cross direction profiles (view as depicted in figs. 1 and 2 Angle), photoelectric conversion is carried out to enable the photovoltaic generation unit for receiving illumination.Pass through the driving of driving assembly 200 at least two as a result, The photovoltaic generation unit expansion of layer, expands the photoelectric conversion area of photovoltaic generation unit, improves the efficiency of photoelectric conversion, and It drives at least two layers of photovoltaic generation unit to collapse by driving assembly 200, has saved the occupied space of the power generator, avoided The interference of itself and peripheral parts facility.
When driving assembly 200 drives two groups of supporting mechanisms mutually to collapse, at least two on two groups of supporting mechanisms can be made The photovoltaic generation unit of layer forms longitudinal lamination, to reduce photovoltaic generation unit accounting for the space on roof of the vehicle With, avoid interfering collision with road side facility, while be located at top layer photovoltaic generation unit can receive the straight of photovoltaic light Irradiation is connect, to carry out efficient photoelectric conversion.Wherein, under rounding state, positioned at lower layer photovoltaic generation unit be located at it is upper The photovoltaic generation unit of layer maintains distance, although the photovoltaic generation unit of lower layer is longitudinally receiving the photovoltaic power generation list on upper layer Member is blocked, and still, the photovoltaic generation unit of lower layer still can receive faint illumination by distance between the two, thus Relatively weak photoelectric conversion can be carried out, in combination with the efficient photoelectric conversion of the photovoltaic generation unit on upper layer, Ke Yi Necessary electricity is provided in vehicle traveling process.
When driving assembly 200 drives two groups of supporting mechanisms to be located remotely from each other, photovoltaic generation unit can be made in horizontal spreading, The photovoltaic generation unit of lower layer is caused to block to avoid the photovoltaic generation unit on upper layer, to make the photovoltaic generation unit of lower layer Illumination can be received simultaneously with the photovoltaic generation unit on upper layer to carry out efficient photoelectric conversion, make automobile in the state of static Power Reserve rapidly and efficiently is carried out, to guarantee the normal work of automobile various functions in the process of moving.
It should be noted that photovoltaic generation unit can be copper indium gallium selenide cell chip, gallium arsenide cells chip, monocrystalline silicon The combination of one or more of battery chip, polycrystal silicon cell chip or sensitizing dyestuff battery chip, it is preferred that light Volt generator unit is copper indium gallium selenide cell chip, can obtain efficient photoelectric conversion under low light environment.
Further, which further includes light detection means, and light detection means are used for the illumination that will test Signal is sent to driving assembly 200, and driving assembly 200 drives supporting mechanism to rotate according to luminance signal.Wherein, light detection dress Setting can be optical sensor.
Specifically, supporting mechanism may include link assembly and bracket, wherein link assembly includes input terminal and output End, the driving end of driving assembly 200 are connected with the input terminal of link assembly, with the rotation of drive link component, realize photovoltaic power generation The expansion or gathering of unit;The output end of link assembly is connected with bracket;At least two layers of photovoltaic generation unit is arranged in bracket On, support and protection to photovoltaic generation unit may be implemented by the way that bracket is arranged as a result, be also convenient for by the way that link assembly is arranged The expansion or gathering of photovoltaic generation unit.
Specifically, in one embodiment, bracket may include pedestal and clamping plate, Boards wall on pedestal, pedestal with Link assembly pivot joint realizes the expansion and gathering of photovoltaic generation unit by the relative rotation between link assembly and pedestal, often The photovoltaic generation unit of layer is each attached on clamping plate.Wherein, clamping plate can be clamped in the marginal position of photovoltaic generation unit, thus While can guaranteeing to clamp photovoltaic generation unit, avoids causing larger area to block photovoltaic generation unit, make photovoltaic Generator unit has biggish photoelectric conversion area.
In another embodiment, every layer of photovoltaic generation unit is slidably fixed on bracket, it is possible thereby to realize Photovoltaic generation unit slides laterally along bracket, when the photovoltaic generation unit positioned at upper layer is to the photovoltaic generation unit for being located at lower layer When causing to block, the position of photovoltaic generation unit can be adjusted relative to bracket sliding by photovoltaic generation unit, to eliminate It blocks.
It should be noted that in order to guarantee that bracket can keep horizontal during the power generator collapses or is unfolded State carries out efficient photoelectric conversion in order to receive illumination, and the output end of link assembly can be pivotally connected with bracket.
Specifically, as shown in Figure 1, link assembly includes the first bar 300, the second bar 400, third bar 600 and the 4th bar 700;Bracket can be two layers, and two layers of bracket is respectively the first bracket 500 and the second bracket 800;The first end of first bar 300 is The first end of the input terminal of link assembly, the second end of the first bar 300 and the second bar 400 is pivotally connected;The middle part of second bar 400 is used for It is hinged on fixture, the second end of the second bar 400 and the first bracket 500 are pivotally connected;The first end of third bar 600 is hinged on can It is arranged on fixture on a vehicle, the middle part of third bar 600 and the first bracket 500 are pivotally connected, the second end of third bar 600 It is pivotally connected with the second bracket 800;The first end of 4th bar 700 and the first bracket 500 are pivotally connected, the second end and second of the 4th bar 700 Bracket 800 is pivotally connected, thus, it is possible to make shape between the first bracket 500 and the second bracket 800 and the first bracket 500 and pedestal 100 At a kind of parallelogram sturcutre, thereby may be ensured that the first bracket 500 and the second bracket 800, holding is horizontal during the motion State.
Specifically, as shown in figure 3, being provided with the through-hole 510 for wearing photovoltaic generation unit 900 on the first bracket 500, The top of first bracket 500 is provided with the opening 520 for receiving illumination, so as to receive illumination by opening 520, with Carry out photoelectric conversion.Wherein, photovoltaic generation unit 900 can slide in through-hole 510 according to actual needs, while can pass through Opening 520 absorbs illumination, to carry out photoelectric conversion.Wherein, photovoltaic generation unit 900, which can slide, is threaded through in through-hole 510, leads to The sliding of photovoltaic generation unit 900 is crossed, its adjustable relative position between each photovoltaic generation unit avoids each photovoltaic power generation Exist between unit and blocks.Certainly, the second bracket 800 can with the structure and function having the same of the first bracket 500, herein no longer It repeats.
Wherein, above-mentioned at least two layers of photovoltaic generation unit may include the first photovoltaic generation unit and the second photovoltaic power generation Unit, the first photovoltaic generation unit can be set on the first bracket 500, and the second photovoltaic generation unit can be set in the second support On frame 800.
Wherein, fixture can be also equipped on the pedestal 100 for pedestal 100 on a vehicle can be arranged Photovoltaic generation unit, the photovoltaic generation unit can be defined as third photovoltaic generation unit, when the power generator is in expansion shape When state, due to the limitation of link assembly, the first photovoltaic generation unit on the first bracket 500 in the longitudinal direction can be on pedestal 100 Third photovoltaic generation unit cause partial occlusion, easily cause third photovoltaic generation unit that cannot play the effect of photoelectric conversion completely Fruit;For this purpose, in the present embodiment, the sliding of the first photovoltaic generation unit is threaded through in through-hole 510, wherein the first bracket 500 is frame Frame structure, intermediate portion are blocked without structure, after the power generator is unfolded, can further make the first photovoltaic generation unit Opposite first bracket 500 slides, by the part blocked on third photovoltaic generation unit by the first photovoltaic generation unit through the One bracket 500 exposes under light illumination, so that realizing third photovoltaic generation unit sufficiently receives illumination, to carry out efficient photoelectricity Conversion.
Certainly, fixture may be vehicles ontology, and photovoltaic generation unit can be set on ontology.
It should be noted that the structure of driving assembly 200 can there are many, in one embodiment, for the ease of control, The driving assembly 200 may include the cylinder body and cylinder rod of cylinder, and cylinder body is for being fixed on fixture;The driving end of cylinder rod It is connected with the input terminal of link assembly.
Specifically, the cylinder body of cylinder can be fixed on pedestal 100, one end of the cylinder rod of cylinder and the first bar 300 connections drive one end on the first bar 300 far from the second bar 400 to be rotatablely connected;By the promotion of cylinder rod, make the first bar The one end being connected on 300 with cylinder rod is in longitudinal movement, simultaneously as the first bar 300 is acted on by the pivot joint of the second bar 400, the It relatively rotates between the one end being connected with cylinder rod and cylinder rod on one bar 300, so as to drive the second bar 400 to occur Rotation, and then realize the first bracket 500 in lateral expansion or gathering.
And in another embodiment, in order to promote the accurate control to link assembly rotational angle, driving assembly 200 can be with Including driving motor, transmission gear and driving rack, transmission gear is fixedly connected with the output shaft of driving motor, transmission gear with Driving rack engagement, the end of driving rack is connect with link assembly.Specifically, driving motor can drive driving cog to rotate It is dynamic, and then realize the movement of driving rack in the longitudinal direction, it is possible thereby to apply longitudinal driving force to the first bar 300, thus real The expansion or gathering of existing first bracket 500, and pass through the setting to driving motor operating parameter, it is ensured that the flexible essence of rack gear Degree, and then realize the precision controlling to 400 rotational angle of the second bar.
Wherein, the sliding of the first photovoltaic generation unit or the second photovoltaic generation unit can be driven by cylinder, hydraulic cylinder etc. Dynamic component driving, and in order to guarantee the stability for driving each photovoltaic generation unit to move, the first bracket 500 and the second bracket 800 On motor and rack gear can be set, be fixedly installed gear on the output shaft of motor, wheel and rack engagement, the first photovoltaic Generator unit is arranged on the rack gear on the first bracket 500, and the rack gear on the second bracket 800 is arranged in the second photovoltaic generation unit On, the translational motion of rack gear is realized so as to the driving by motor, and then realize the sliding of photovoltaic generation unit.
The utility model embodiment additionally provides a kind of photovoltaic vehicle comprising vehicle body, wherein further includes that this is practical The photovoltaic power generation apparatus that novel any embodiment provides, driving assembly is arranged on vehicle body in photovoltaic power generation apparatus.
It will be appreciated by persons skilled in the art that driving assembly can be set on vehicle body it is any convenient for receive light According to position, such as may be provided at hair hatchcover on or vehicle ceiling on, other positions can also be set certainly.Preferably, it drives Dynamic component is arranged on the vehicle ceiling of vehicle body, maximumlly to receive solar irradiation.
The utility model embodiment additionally provides a kind of photovoltaic ship comprising ship ontology, wherein further includes the utility model The photovoltaic power generation apparatus that any embodiment provides, the driving mechanism in the photovoltaic power generation apparatus are arranged on ship ontology.
It will be appreciated by persons skilled in the art that driving assembly can be set on ship ontology it is any convenient for receive illumination Position, such as may be provided on profile or ship ceiling, other positions can also be set certainly.Preferably, driving group The ship ceiling of ship ontology is arranged in part.
Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship provided by the embodiment of the utility model, are driven by driving assembly At least two layers of photovoltaic generation unit expansion, expands the photoelectric conversion area of photovoltaic generation unit, improves photoelectric conversion Efficiency, and drive at least two layers of photovoltaic generation unit to collapse by driving assembly, the occupied space of the power generator has been saved, Avoid the interference of itself and peripheral parts facility.
The structure, features, and effects of the present invention is described in detail based on the embodiments shown in the drawings, with Upper described is only the preferred embodiment of the utility model, but the present invention does not limit the scope of implementation as shown in the drawings, it is all according to Change or equivalent example modified to equivalent change made by conception according to the utility model, still without departing from specification and figure When showing covered spirit, it should be within the protection scope of the present utility model.

Claims (17)

1. a kind of photovoltaic power generation apparatus characterized by comprising
Driving assembly, supporting mechanism and at least two layers of photovoltaic generation unit;
At least two layers of the photovoltaic generation unit is arranged on the supporting mechanism;
The driving component drives the supporting mechanism that at least two layers of the photovoltaic generation unit is driven to collapse, and is formed and collapses knot Structure, so that the photovoltaic generation unit for receiving illumination carries out photoelectric conversion;
The driving component drives the supporting mechanism to drive at least two layers of the photovoltaic generation unit expansion, forms expansion knot Structure, so that the photovoltaic generation unit for receiving illumination carries out photoelectric conversion.
2. photovoltaic power generation apparatus according to claim 1, which is characterized in that the supporting mechanism includes link assembly and support Frame, the link assembly include input terminal and output end;
The driving end of the driving component is connected with the input terminal of the link assembly;
The output end of the link assembly is connected with the bracket;
At least two layers of the photovoltaic generation unit is arranged on the bracket.
3. photovoltaic power generation apparatus according to claim 2, which is characterized in that the bracket includes pedestal and clamping plate, described Pedestal and the link assembly are pivotally connected, and on the base, the photovoltaic generation unit is fixed on the folder to the Boards wall On plate.
4. photovoltaic power generation apparatus according to claim 2, which is characterized in that at least two layers of the photovoltaic generation unit Every layer of photovoltaic generation unit is slidably mounted on the bracket, so that the photovoltaic generation unit can be horizontal along the bracket To sliding.
5. photovoltaic power generation apparatus according to claim 2, which is characterized in that the output end of the link assembly and the support Frame pivot joint.
6. photovoltaic power generation apparatus according to claim 5, which is characterized in that the link assembly further includes the first bar, Two bars, third bar and the 4th bar;
The bracket is two layers, and two layers of bracket is respectively the first bracket and the second bracket;
The first end of first bar is the input terminal of the link assembly, the second end of first bar and second bar First end pivot joint;
The middle part of second bar is for being hinged on the fixture that can be arranged on a vehicle, and the second of second bar End is pivotally connected with first bracket;
The first end of the third bar is hinged on the fixture, and the middle part of the third bar and first bracket are pivotally connected, The second end of the third bar and second bracket are pivotally connected;
The first end of 4th bar and first bracket are pivotally connected, the second end of the 4th bar and the second bracket pivot It connects.
7. photovoltaic power generation apparatus according to claim 6, which is characterized in that the third bar includes casing and push rod;
The push rod is telescopically disposed in described sleeve pipe;
One end and the fixture in described sleeve pipe far from the push rod is hinged;
Intermediate position and first bracket on the push rod are pivotally connected;
One end and second bracket on the push rod far from described sleeve pipe are pivotally connected.
8. photovoltaic power generation apparatus according to claim 6, which is characterized in that on first bracket and second bracket It is provided with motor, gear and rack gear;
The output shaft of the motor is connected with the gear, and the gear is engaged with the rack gear;
The photovoltaic generation unit is arranged on the rack gear.
9. photovoltaic power generation apparatus according to claim 6, which is characterized in that the fixture is that traffic work can be arranged in Pedestal on tool is also equipped with photovoltaic generation unit on the pedestal.
10. photovoltaic power generation apparatus according to claim 6, which is characterized in that the fixture is the ontology of the vehicles, Photovoltaic generation unit is also equipped on the ontology.
11. photovoltaic power generation apparatus according to claim 2, which is characterized in that the driving component is cylinder, the cylinder Including cylinder body and cylinder rod;
The cylinder body is fixed on fixture;
The driving end of the cylinder rod is connected with the input terminal of the link assembly.
12. photovoltaic power generation apparatus according to claim 2, which is characterized in that the driving component includes driving motor, passes Moving gear and driving rack;
The output shaft of the transmission gear and the driving motor is sequentially connected, and the transmission gear is nibbled with the driving rack It closes, the driving rack is connected with the link assembly.
13. photovoltaic power generation apparatus according to claim 1, which is characterized in that further include light detection means, for that will examine The luminance signal measured is sent to the driving component, so that the driving component drives the supporting mechanism movement.
14. a kind of photovoltaic vehicle, including vehicle body, which is characterized in that further include described in claim 1-13 any one Photovoltaic power generation apparatus, the driving component are arranged on the vehicle body.
15. photovoltaic vehicle according to claim 14, which is characterized in that the driving component is arranged in the vehicle body Vehicle ceiling on.
16. a kind of photovoltaic ship, including ship ontology, which is characterized in that further include photovoltaic described in claim 1-13 any one Power generator, the driving component are arranged on the ship ontology.
17. photovoltaic ship according to claim 16, which is characterized in that the ship of the ship ontology is arranged in the driving component On ceiling.
CN201821062003.8U 2018-07-05 2018-07-05 Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship Active CN208608952U (en)

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CN201821062003.8U CN208608952U (en) 2018-07-05 2018-07-05 Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship

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Application Number Priority Date Filing Date Title
CN201821062003.8U CN208608952U (en) 2018-07-05 2018-07-05 Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship

Publications (1)

Publication Number Publication Date
CN208608952U true CN208608952U (en) 2019-03-15

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109039260A (en) * 2018-07-05 2018-12-18 东汉新能源汽车技术有限公司 Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109039260A (en) * 2018-07-05 2018-12-18 东汉新能源汽车技术有限公司 Photovoltaic power generation apparatus, photovoltaic vehicle and photovoltaic ship

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