CN206433473U - A kind of greenhouse intelligent management system based on artificial tree solar energy power generating - Google Patents

A kind of greenhouse intelligent management system based on artificial tree solar energy power generating Download PDF

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Publication number
CN206433473U
CN206433473U CN201720553406.1U CN201720553406U CN206433473U CN 206433473 U CN206433473 U CN 206433473U CN 201720553406 U CN201720553406 U CN 201720553406U CN 206433473 U CN206433473 U CN 206433473U
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China
Prior art keywords
greenhouse
management system
intelligent management
solar energy
system based
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CN201720553406.1U
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余才志
何斌
谢进伟
余浚华
施建兵
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Wuxi Eleven New Energy Investment Co Ltd
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Wuxi Eleven New Energy Investment Co Ltd
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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
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/10Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
    • Y02A40/25Greenhouse technology, e.g. cooling systems therefor
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/12Technologies relating to agriculture, livestock or agroalimentary industries using renewable energies, e.g. solar water pumping

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Abstract

The utility model discloses a kind of greenhouse intelligent management system based on artificial tree solar energy power generating, belong to solar energy generation technology field, its object is to provide a kind of greenhouse intelligent management system based on artificial tree solar energy power generating, the problem of providing equipment energy supply inconvenience in electric energy, solution greenhouse after electric energy for the equipment in greenhouse is converted light energy into by the photovoltaic panel on artificial tree.It includes tree body, greenhouse, photovoltaic panel is installed in the tree body, the photovoltaic panel is connected with electric storage device, inverter in turn by cable, the other end of the inverter is electrically connected with power distribution cabinet, and the power distribution cabinet in greenhouse with being used to detect the detection device of ambient parameter in greenhouse, being electrically connected for adjusting the execution equipment of ambient parameter in greenhouse.The utility model is applied to the electric energy that the photovoltaic panel on artificial tree is produced being directly used in greenhouse intelligent management system.

Description

A kind of greenhouse intelligent management system based on artificial tree solar energy power generating
Technical field
The utility model belongs to solar energy generation technology field, is related to a kind of greenhouse management system of use solar power generation System.
Background technology
Artificial tree, as its name suggests, it is not nature seeds, but a kind of false tree.It is that people use modern means of science and technology It is true to show nature trees in specific occasion with new material to the reprocessing of nature trees and the imitation of mode of appearance The ornament of effect.Photovoltaic generation is that luminous energy is directly translated into the one of electric energy using the photovoltaic effect of interface The technology of kind, it is mainly made up of solar panel (component), controller and inverter three parts, and critical piece is by electronics member Device is constituted.Solar cell carries out packaging protection after series connection can form the solar module of large area, then with closing The parts such as power controller are formed photovoltaic power generation apparatus.
In addition, with the development of planting technology, in some areas of China, four seasons climate change is more obvious, then greatly Canopy cultivation technique is a large-scale application so that people can be able to eat fresh vegetables at all seasons.Using big During canopy is cultivated, the ambient parameter such as temperature, humidity, illumination in canopy will have a strong impact on the growth of plant, thus need to be to canopy The parameters such as interior temperature, humidity, illumination are adjusted.So, the energy supply of greenhouse will be a major issue.Due to residing for greenhouse Position limitation, the usual position of greenhouse is more remote, away from residential area, thus generally need to individually lead the equipment for setting power network to greenhouse Energized that just seem will be particularly problematic, and the cost of required input is higher.
The content of the invention
The purpose of this utility model is:A kind of greenhouse intelligent management system based on artificial tree solar energy power generating is provided System, is converted light energy into after electric energy by the photovoltaic panel on artificial tree and provides electric energy for the equipment in greenhouse, set in solution greenhouse The problem of available can be inconvenient.
The technical solution adopted in the utility model is as follows:
A kind of greenhouse intelligent management system based on artificial tree solar energy power generating, including tree body, greenhouse, the tree body On photovoltaic panel is installed, the photovoltaic panel is connected with electric storage device, inverter, the other end of the inverter in turn by cable Power distribution cabinet is electrically connected with, the power distribution cabinet is interior for detecting the detection device of ambient parameter in greenhouse, for adjusting greatly with greenhouse The execution equipment electrical connection of ambient parameter in canopy.
Wherein, the detection device includes temperature sensor, humidity sensor, carbon dioxide sensor or/and illumination biography Sensor, the power distribution cabinet is electrically connected with temperature sensor, humidity sensor, carbon dioxide sensor or/and optical sensor.
Wherein, the execution equipment includes heater, humidifier, gas valve, carbon-dioxide generator or/and illumination Lamp, the power distribution cabinet is electrically connected with heater, humidifier, gas valve, carbon-dioxide generator or/and illuminating lamp.
Wherein, it is additionally provided with master controller, each greenhouse and is provided with sub-controller, the master controller, sub- control Device is electrically connected with power distribution cabinet;Detection device, execution equipment in the greenhouse pass through with the sub-controller on corresponding greenhouse Wired or wireless mode is connected, and the sub-controller on each greenhouse is connected by wired or wireless mode with master controller.
Wherein, the greenhouse include arch support, plastic sheeting, moving guide rail, the arch support include vertical columns, The expansion link for deploying or drawing in greenhouse, the vertical columns, work are hinged with some active columns, the vertical columns The linkage for driving active column to move is connected between dynamic column, telescopic end and the linkage of the expansion link are cut with scissors Connect.
Wherein, the linkage includes main crank, and one end and the vertical columns of the main crank are hinged, the main crank The body of rod on be hinged with multigroup slave connecting rod be arrangeding in parallel along the length direction of main crank, the other end of every group of slave connecting rod with it is corresponding Active column be hinged.
Wherein, it is connected with the tree body on cross bar, the cross bar and is connected with support, the other end of the support passes tree It is connected after the tree crown of the body first half with photovoltaic panel.
Wherein, the angle-adjusting mechanism for adjusting leg inclination is connected with the cross bar, the support passes through angle Adjustment mechanism is connected with cross bar.
Wherein, the angle-adjusting mechanism includes offering on the connection disk body being connected on cross bar, the connection disk body Center connecting hole, multiple circumferential connecting holes, multiple circumferential connecting holes Xian Yan centers centered on the axis of center connecting hole are connected The circumference in hole is uniform;The cross bar is realized and is connected by center connecting hole, circumferential connecting hole, two connecting pins with support.
In summary, by adopting the above-described technical solution, the beneficial effects of the utility model are:
1st, in the utility model, photovoltaic panel is installed in the tree body of artificial tree, can be converted solar energy into by photovoltaic panel Electric energy is simultaneously delivered to electric storage device and stored, and the electric energy of electric storage device memory storage by the detection device being delivered in greenhouse, Equipment is performed, is that detection device, execution equipment provide the energy being monitored, when adjust every ambient parameter in greenhouse;Will be imitative Raw tree is applied in combination with greenhouse, and artificial tree is in addition to beautifying the environment, additionally it is possible to converted luminous energy by the photovoltaic panel above it Into electric energy;Various equipment in greenhouse can using photovoltaic panel conveying on artificial tree come electric energy, be that environmental data is adopted in greenhouse The normal energy supply that collection, adjustment provide items of equipment in the energy, greenhouse is more convenient, fast, solves equipment energy supply inconvenience in greenhouse The problem of.
2nd, in the utility model, the detection device include temperature sensor, humidity sensor, carbon dioxide sensor or/ And optical sensor, the temperature sensor can detect the temperature in greenhouse in real time, and the humidity sensor can be detected greatly in real time Humidity in canopy, the carbon dioxide sensor can detect the concentration of carbon dioxide in greenhouse in real time, and the optical sensor can The light conditions in greenhouse are detected in real time, are passed so as to pass through temperature sensor, humidity sensor, carbon dioxide sensor and illumination Sensor is capable of detecting when every ambient parameter in greenhouse;In addition, the temperature sensor, humidity sensor, carbon dioxide sensing Device and optical sensor are connected with power distribution cabinet, and the electric energy that photovoltaic panel is produced on artificial tree will be used for temperature sensor, humidity sensor Device, carbon dioxide sensor and optical sensor, are that temperature sensor, humidity sensor, carbon dioxide sensor and illumination are passed The normal work of sensor provides the energy.
3rd, in the utility model, the execution equipment include heater, humidifier, gas valve, carbon-dioxide generator and Illuminating lamp, the heater can adjust the temperature in greenhouse, and the humidifier can adjust the humidity in greenhouse, the gas valve energy Enough that fresh air is filled with into greenhouse or the air in greenhouse is discharged, the carbon-dioxide generator can be adjusted two in greenhouse The concentration of carbonoxide, the illuminating lamp can supplement light into greenhouse, so as to pass through heater, humidifier, gas valve, dioxy Every ambient parameter in greenhouse can be adjusted in real time by changing carbon generator and illuminating lamp so that the environment in greenhouse can be fitted more Suitable plant growth;In addition, the heater, humidifier, gas valve, carbon-dioxide generator and illuminating lamp are connected with power distribution cabinet, The electric energy that photovoltaic panel is produced on artificial tree will be used for heater, humidifier, gas valve, carbon-dioxide generator and illuminating lamp, Normal work for heater, humidifier, gas valve, carbon-dioxide generator and illuminating lamp provides the energy.
4th, in the utility model, each greenhouse is correspondingly arranged a sub-controller, all sub-controller and master controller Connection, thus the environmental data that detection device is detected in greenhouse can be transmitted by sub-controller to master controller, master controller Controlled to perform the corresponding work of equipment startup in each greenhouse by sub-controller again according to the environmental data detected, adjustment is big Corresponding environment in canopy, so as to realize the automatic data collection of each item data, adjust automatically in greenhouse.
5th, in the utility model, expansion link, linkage be set on the support of the greenhouse, the expansion link can using pneumatic or The mode of person's hydraulic pressure is stretched, and the other end and the linkage of the expansion link are hinged, thus can be drawn over to one's side by expansion link or Active column is strutted, so as to realize the linkage expansion of whole greenhouse or draw in, the efficiency for improve greenhouse expansion, drawing in.
6th, in the utility model, the linkage includes main crank and multigroup slave connecting rod, and multigroup slave connecting rod is along main crank Length direction be arranged in parallel, so as to can drive other activities by multigroup slave connecting rod when expansion link driving main crank is rotated Column synchronizing moving, so as to realize the linkage expansion of whole greenhouse or draw in, the efficiency for improve greenhouse expansion, drawing in.
7th, in the utility model, photovoltaic panel is connected on cross bar by support, thus can make in the presence of support photovoltaic Plate is located at the top of leaf, thus is not in that leaf is blocked to photovoltaic panel, improves the generating efficiency of photovoltaic panel.
8th, the angle-adjusting mechanism for adjusting leg inclination is connected with the utility model, on cross bar, passes through the angle Adjustment mechanism can adjust the angle of inclination of photovoltaic panel according to actual conditions, and sunlight vertical irradiation is made as much as possible to photovoltaic panel, Improve the generating efficiency of photovoltaic panel.
9th, in the utility model, center connecting hole, circumferential connecting hole are provided with the connection disk body of the angle-adjusting mechanism, Cross bar is connected with support by center connecting hole, circumferential connecting hole, two connecting pins realizations, thus by the way that connecting pin is inserted The Inclination maneuver of photovoltaic panel can be realized by being connected to different circumferential connecting holes, so that according to the installation site of artificial tree, orientation adjustment The inclination angle of photovoltaic panel, improves the generating efficiency of photovoltaic panel.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the partial schematic diagram of greenhouse in the utility model;
Fig. 3 is the structural representation of angle-adjusting mechanism in the utility model;
Fig. 4 is Fig. 3 partial sectional view;
Marked in figure:1- tree bodies, 2- cross bars, 3- supports, 4- photovoltaic panels, 5- greenhouses, 9- angle-adjusting mechanisms, 51- movements Guide rail, 52- road wheels, 53- vertical columns, 54- expansion links, 55- active columns, 56- main cranks, 57- slave connecting rods, 91- connections The circumferential connecting hole of disk body, 92-, 93- connecting pins, 94- centers connecting hole.
Embodiment
In order that the purpose of this utility model, technical scheme and advantage are more clearly understood, below in conjunction with accompanying drawing and implementation Example, the utility model is further elaborated.It should be appreciated that specific embodiment described herein is only to explain this Utility model, is not used to limit the utility model.
A kind of greenhouse intelligent management system based on artificial tree solar energy power generating, it includes tree body 1, greenhouse and intelligently managed Reason system.The tree body 1 includes trunk and leaf.Photovoltaic panel 4 is installed on the trunk of tree body 1, photovoltaic panel 4 is arranged on tree Dry top.The greenhouse intelligent management system includes greenhouse 5, the detection device in greenhouse 5 and performs equipment, and the detection device can be real When detection greenhouse 5 in every environmental information, the execution equipment can be adjusted in greenhouse 5 in real time according to the environmental information detected Ambient parameter so that the environment in greenhouse 5 is capable of the growth of more suitable vegetation.In addition, photovoltaic panel 4 by cable successively Electric storage device, inverter are connected with, the other end of the inverter is electrically connected with power distribution cabinet, the power distribution cabinet and greenhouse 5 Detection device, execution equipment electrical connection.The tree body 1 is cooperated with greenhouse intelligent management system, and photovoltaic panel 4 is produced in tree body 1 Electric energy can input electric storage device and stored, and direct current will be converted into by the electric energy of storage via inverter in electric storage device Power distribution cabinet is transported to after alternating current, and is controlled by power distribution cabinet to detection device, equipment offer electric energy is provided.
During work, photovoltaic panel 4 receives sunshine and converts light energy into electric energy daytime, and what photovoltaic panel 4 was produced will pass through line Cable is delivered to electric storage device and stored;The electric energy of storage will be delivered to inverter in electric storage device, and inverter turns direct current Change into and be delivered to distribution box after alternating current, then distribution box is electrically connected with detection means, the performs device of greenhouse 5, by electric energy Detection means, performs device are delivered to, electric energy is provided for detection means, performs device, greenhouse 5 is detected in real time by detection means Interior every ambient parameter, can adjust every ambient parameter in greenhouse 5 in real time by performs device.
Preferably, the detection device includes temperature sensor, humidity sensor, carbon dioxide sensor or/and illumination Sensor, the power distribution cabinet is electrically connected with temperature sensor, humidity sensor, carbon dioxide sensor or/and optical sensor, is led to Electrical energy transportation that power distribution cabinet produces photovoltaic panel 4 is crossed to temperature sensor, humidity sensor, carbon dioxide sensor or/and light According to sensor, the normal work for temperature sensor, humidity sensor, carbon dioxide sensor or/and optical sensor is provided Electric energy.
Preferably, the execution equipment includes heater, humidifier, gas valve, carbon-dioxide generator or/and illumination Lamp, the power distribution cabinet is electrically connected with heater, humidifier, gas valve, carbon-dioxide generator or/and illuminating lamp, passes through distribution The electrical energy transportation that cabinet produces photovoltaic panel 4 to heater, humidifier, gas valve, carbon-dioxide generator or/and illuminating lamp, Normal work for heater, humidifier, gas valve, carbon-dioxide generator or/and illuminating lamp provides electric energy.
Preferably, being additionally provided with master controller, sub-controller is provided with each greenhouse 5, the master controller, son Controller is electrically connected with power distribution cabinet, so that the electric energy that photovoltaic panel 4 is produced is delivered to master controller by power distribution cabinet and son is controlled Device processed, the normal work for master controller and sub-controller provides electric energy.Detection device in the greenhouse 5, perform equipment with Sub-controller on correspondence greenhouse 5 is connected by wired or wireless mode, the sub-controller on each greenhouse 5 by wired or Wirelessly it is connected with master controller, so as to realize that detection device is set with sub-controller, sub-controller and master controller, execution The standby data communication between sub-controller.
Preferably, the greenhouse 5 includes arch support 3, plastic sheeting, moving guide rail 51, the arch support 3 is by both sides Column and the arched girder at top are movably connected to form;The column is divided into vertical columns 53 and active column 55, the vertical columns 53 When greenhouse 5 carries out flexible, position is fixed, and the active column 55 can be moved when greenhouse 5 carries out flexible.In vertical columns 53 and the bottom of active column 55 be respectively connected with road wheel 52, vertical columns 53 and walking column are arranged on by road wheel 52 and moved In dynamic guide rail 51, so that the road wheel 52 in flexible greenhouse 5 on active column 55 can be moved in moving guide rail 51.The greenhouse 5 vertical columns 53 are settable one group, and the active column 55 need to set multigroup, and the group number of active column 55 can be according to greenhouse 5 Length is determined, and multigroup active column 55 is arranged on the length direction of ice eye moving guide rail 51 behind vertical columns 53 successively Set.Expansion link 54 is hinged with vertical columns 53, the expansion link 54 is mainly used in pulling the movement of active column 55 so as to real The expansion or gathering of existing greenhouse 5.It is hinged with linkage between vertical columns 53, active column 55, and expansion link 54 is stretched Contracting end is hinged with linkage;When expansion link 54 shrinks drivening rod mechanism action, by the linkage activity can be made vertical Post 55 links, and finally realizes the flexible of greenhouse 5.
Preferably, the linkage includes main crank 56, one end and the vertical columns 53 of the main crank 56 are hinged, the master The other end of crank 56 is to be hinged with multigroup slave connecting rod along the length direction of main crank 56 on free end, the body of rod of the main crank 56 57, multigroup slave connecting rod 57 is be arranged in parallel, and the other end of every group of slave connecting rod 57 is hinged with corresponding active column 55.Work as expansion link When 54 promotion main cranks 56 are rotated, remaining active column 55 will be driven to link by slave connecting rod 57.
Preferably, being connected with cross bar 2 in tree body 1, support 3 is connected with cross bar 2, the other end of support 3 passes tree It is connected after the tree crown of the first half of body 1 with photovoltaic panel 4, so that the leaf for being prevented effectively from artificial tree is blocked to photovoltaic panel 4.
Preferably, being connected with the angle-adjusting mechanism 9 for adjusting the inclination angle of support 3 on cross bar 2, the support 3 passes through Angle-adjusting mechanism 9 is connected with cross bar 2.In the presence of angle-adjusting mechanism 9, installation of the photovoltaic panel 4 on cross bar 2 can adjust Inclination angle, so that sunshine vertical irradiation as much as possible is in photovoltaic panel 4.
Preferably, the angle-adjusting mechanism 9 is included on the connection disk body 91 being connected on cross bar 2, the connection disk body 91 Center connecting hole 94, multiple circumferential connecting holes 92 are offered, multiple circumferential connecting holes 92 are using the axis of center connecting hole 94 in The circumference of Xin Xianyan centers connecting hole 94 is uniform;Offered on support 3 with being connected the groove that disk body 91 is adapted, branch during assembling Frame 3 is connected on connection disk body 91 by the groove on support 3, and then cross bar 2 passes through center connecting hole 94, a week with support 3 Connection is realized to connecting hole 92, two connecting pins 93.In addition, multigroup angle also can be set along the length direction of cross bar 2 on cross bar 2 Spend adjustment mechanism 9.
Embodiment 1
A kind of greenhouse intelligent management system based on artificial tree solar energy power generating, it includes tree body 1, greenhouse and intelligently managed Reason system.The tree body 1 includes trunk and leaf.Photovoltaic panel 4 is installed on the trunk of tree body 1, photovoltaic panel 4 is arranged on tree Dry top.The greenhouse intelligent management system includes greenhouse 5, the detection device in greenhouse 5 and performs equipment, and the detection device can be real When detection greenhouse 5 in every environmental information, the execution equipment can be adjusted in greenhouse 5 in real time according to the environmental information detected Ambient parameter so that the environment in greenhouse 5 is capable of the growth of more suitable vegetation.In addition, photovoltaic panel 4 by cable successively Electric storage device, inverter are connected with, the other end of the inverter is electrically connected with power distribution cabinet, the power distribution cabinet and greenhouse 5 Detection device, execution equipment electrical connection.The tree body 1 is cooperated with greenhouse intelligent management system, and photovoltaic panel 4 is produced in tree body 1 Electric energy can input electric storage device and stored, and direct current will be converted into by the electric energy of storage via inverter in electric storage device Power distribution cabinet is transported to after alternating current, and is controlled by power distribution cabinet to detection device, equipment offer electric energy is provided.
Embodiment 2
On the basis of embodiment one, the detection device includes temperature sensor, humidity sensor, carbon dioxide sensor Or/and optical sensor, the power distribution cabinet and temperature sensor, humidity sensor, carbon dioxide sensor or/and optical sensor Electrical connection, the electrical energy transportation produced photovoltaic panel 4 by power distribution cabinet to temperature sensor, humidity sensor, carbon dioxide sensing Device or/and optical sensor, are the normal of temperature sensor, humidity sensor, carbon dioxide sensor or/and optical sensor Work provides electric energy.
Embodiment 3
On the basis of embodiment one or embodiment two, the execution equipment includes heater, humidifier, gas valve, two Carbonoxide generator or/and illuminating lamp, the power distribution cabinet and heater, humidifier, gas valve, carbon-dioxide generator or/and Illuminating lamp is electrically connected, the electrical energy transportation produced photovoltaic panel 4 by power distribution cabinet to heater, humidifier, gas valve, titanium dioxide Carbon generator or/and illuminating lamp, are the normal of heater, humidifier, gas valve, carbon-dioxide generator or/and illuminating lamp Work provides electric energy.
Embodiment 4
On the basis of above-described embodiment, master controller is additionally provided with, sub-controller is provided with each greenhouse 5, The master controller, sub-controller are electrically connected with power distribution cabinet, so that the electric energy that photovoltaic panel 4 is produced is delivered to master by power distribution cabinet Controller and sub-controller, the normal work for master controller and sub-controller provide electric energy.Detection device in the greenhouse 5, Perform equipment to connect by wired or wireless mode with the sub-controller on corresponding greenhouse 5, the son control on each greenhouse 5 Device is connected by wired or wireless mode with master controller, so as to realize detection device and sub-controller, sub-controller and master Data communication between controller, execution equipment and sub-controller.
Embodiment 5
On the basis of above-described embodiment, the greenhouse 5 includes arch support 3, plastic sheeting, moving guide rail 51, the arch Support 3 is movably connected to form by the column on both sides and the arched girder at top;The column is divided into vertical columns 53 and active column 55, The vertical columns 53 position when greenhouse 5 carries out flexible is fixed, and the active column 55 can carry out flexible time shift in greenhouse 5 It is dynamic.Road wheel 52 is respectively connected with vertical columns 53 and the bottom of active column 55, vertical columns 53 and walking column pass through row Walk wheel 52 to be arranged in moving guide rail 51, so that the road wheel 52 in flexible greenhouse 5 on active column 55 can be in moving guide rail Moved in 51.The vertical columns 53 of the greenhouse 5 are settable one group, and the active column 55 need to set multigroup, the group of active column 55 Number can be determined according to the length of greenhouse 5, and multigroup active column 55 is arranged on the ice eye moving guide rail below of vertical columns 53 51 length direction is set gradually.Expansion link 54 is hinged with vertical columns 53, the expansion link 54 is mainly used in pulling activity The movement of column 55 is so as to realize the expansion or gathering of greenhouse 5.Connecting rod machine is hinged between vertical columns 53, active column 55 Structure, and the telescopic end of expansion link 54 is hinged with linkage;When expansion link 54 shrinks drivening rod mechanism action, pass through the company Linkage can make active column 55 link, and finally realize the flexible of greenhouse 5.
Embodiment 6
On the basis of embodiment five, the linkage includes main crank 56, one end of the main crank 56 and vertical columns 53 are hinged, and the other end of the main crank 56 is to be hinged on free end, the body of rod of the main crank 56 along the length direction of main crank 56 There is multigroup slave connecting rod 57, multigroup slave connecting rod 57 be arranged in parallel, and the other end of every group of slave connecting rod 57 and corresponding active column 55 It is hinged.When expansion link 54 promotes main crank 56 to rotate, remaining active column 55 will be driven to link by slave connecting rod 57.
Embodiment 7
On the basis of above-described embodiment, be connected with tree body 1 on cross bar 2, cross bar 2 and be connected with support 3, support 3 it is another One end is connected after passing the tree crown of the first half of tree body 1 with photovoltaic panel 4, so that the leaf for being prevented effectively from artificial tree enters to photovoltaic panel 4 Row is blocked.
Embodiment 8
On the basis of embodiment seven, the angle-adjusting mechanism 9 for adjusting the inclination angle of support 3 is connected with cross bar 2, should Support 3 is connected by angle-adjusting mechanism 9 with cross bar 2.In the presence of angle-adjusting mechanism 9, photovoltaic panel 4 is can adjust in cross bar Mounted angle on 2, so that sunshine vertical irradiation as much as possible is in photovoltaic panel 4.
Embodiment 9
On the basis of embodiment eight, the angle-adjusting mechanism 9 includes the connection disk body 91 being connected on cross bar 2, the company Connect and center connecting hole 94, multiple circumferential connecting holes 92 are offered on disk body 91, multiple circumferential connecting holes 92 are with center connecting hole 94 Axis centered on Xian Yan centers connecting hole 94 it is circumferential uniform;Offered on support 3 with being connected the groove that disk body 91 is adapted, The support 3 is connected on connection disk body 91 by the groove on support 3 during assembling, and then cross bar 2 passes through center connecting hole with support 3 94th, circumferential connecting hole 92, two connecting pins 93 realize connection.In addition, may be used also on cross bar 2 along the length direction of cross bar 2 Multigroup angle-adjusting mechanism 9 is set.
Preferred embodiment of the present utility model is the foregoing is only, it is all at this not to limit the utility model Any modifications, equivalent substitutions and improvements made within the spirit and principle of utility model etc., should be included in the utility model Protection domain within.

Claims (9)

1. a kind of greenhouse intelligent management system based on artificial tree solar energy power generating, including tree body (1), greenhouse (5), described Photovoltaic panel (4) is installed in tree body (1), it is characterised in that:The photovoltaic panel (4) by cable be connected with turn electric storage device, Inverter, the other end of the inverter is electrically connected with power distribution cabinet, and the power distribution cabinet detects greenhouse (5) with being used in greenhouse (5) The detection device of interior ambient parameter, the execution equipment electrical connection for adjusting greenhouse (5) interior ambient parameter.
2. a kind of greenhouse intelligent management system based on artificial tree solar energy power generating as claimed in claim 1, its feature It is:The detection device includes temperature sensor, humidity sensor, carbon dioxide sensor or/and optical sensor, described Power distribution cabinet is electrically connected with temperature sensor, humidity sensor, carbon dioxide sensor or/and optical sensor.
3. a kind of greenhouse intelligent management system based on artificial tree solar energy power generating as claimed in claim 1, its feature It is:The execution equipment includes heater, humidifier, gas valve, carbon-dioxide generator or/and illuminating lamp, described to match somebody with somebody Electric cabinet is electrically connected with heater, humidifier, gas valve, carbon-dioxide generator or/and illuminating lamp.
4. a kind of greenhouse intelligent management system based on artificial tree solar energy power generating as claimed in claim 1, its feature It is:Be additionally provided with master controller, be provided with sub-controller in each greenhouse (5), the master controller, sub-controller with Power distribution cabinet is electrically connected;Detection device, execution equipment in the greenhouse (5) pass through with the sub-controller on corresponding greenhouse (5) Wired or wireless mode is connected, and the sub-controller on each greenhouse (5) is connected by wired or wireless mode and master controller Connect.
5. a kind of greenhouse intelligent management system based on artificial tree solar energy power generating as any one of claim 1-4 System, it is characterised in that:The greenhouse (5) includes arch support, plastic sheeting, moving guide rail (51), and the arch support includes It is hinged with vertical columns (53), some active columns (55), the vertical columns (53) for deploying or drawing greenhouse (5) in Expansion link (54), be connected between the vertical columns (53), active column (55) for driving active column (55) mobile Linkage, the telescopic end of the expansion link (54) is hinged with linkage.
6. a kind of greenhouse intelligent management system based on artificial tree solar energy power generating as claimed in claim 5, its feature It is:The linkage includes main crank (56), and one end and the vertical columns (53) of the main crank (56) are hinged, the master Multigroup slave connecting rod (57) be arrangeding in parallel is hinged with along the length direction of main crank (56) on the body of rod of crank (56), every group of pair is even The other end of bar (57) is hinged with corresponding active column (55).
7. a kind of greenhouse intelligent management system based on artificial tree solar energy power generating as claimed in claim 1, its feature It is:Be connected with the tree body (1) on cross bar (2), the cross bar (2) and be connected with support (3), the support (3) it is another End is connected after passing the tree crown of tree body (1) first half with photovoltaic panel (4).
8. a kind of greenhouse intelligent management system based on artificial tree solar energy power generating as claimed in claim 7, its feature It is:The angle-adjusting mechanism (9) for adjusting support (3) inclination angle is connected with the cross bar (2), the support (3) passes through Angle-adjusting mechanism (9) is connected with cross bar (2).
9. a kind of greenhouse intelligent management system based on artificial tree solar energy power generating as claimed in claim 8, its feature It is:The angle-adjusting mechanism (9) is included on the connection disk body (91) being connected on cross bar (2), the connection disk body (91) Center connecting hole (94), multiple circumferential connecting holes (92) are offered, multiple circumferential connecting holes (92) are with center connecting hole (94) Xian Yan centers connecting hole (94) is circumferential uniform centered on axis;The cross bar (2) passes through center connecting hole with support (3) (94), circumferential connecting hole (92), two connecting pins (93) realize connection.
CN201720553406.1U 2017-05-17 2017-05-17 A kind of greenhouse intelligent management system based on artificial tree solar energy power generating Active CN206433473U (en)

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CN201720553406.1U CN206433473U (en) 2017-05-17 2017-05-17 A kind of greenhouse intelligent management system based on artificial tree solar energy power generating

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Application Number Priority Date Filing Date Title
CN201720553406.1U CN206433473U (en) 2017-05-17 2017-05-17 A kind of greenhouse intelligent management system based on artificial tree solar energy power generating

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115963764A (en) * 2023-01-12 2023-04-14 中国地质调查局水文地质环境地质调查中心 Monitoring data acquisition method and device, electronic equipment and storage medium

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115963764A (en) * 2023-01-12 2023-04-14 中国地质调查局水文地质环境地质调查中心 Monitoring data acquisition method and device, electronic equipment and storage medium
CN115963764B (en) * 2023-01-12 2023-06-02 中国地质调查局水文地质环境地质调查中心 Method and device for collecting monitoring data, electronic equipment and storage medium

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