CN107787769A - A kind of plant intelligent breeding method - Google Patents
A kind of plant intelligent breeding method Download PDFInfo
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- CN107787769A CN107787769A CN201710889199.1A CN201710889199A CN107787769A CN 107787769 A CN107787769 A CN 107787769A CN 201710889199 A CN201710889199 A CN 201710889199A CN 107787769 A CN107787769 A CN 107787769A
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G7/00—Botany in general
- A01G7/04—Electric or magnetic or acoustic treatment of plants for promoting growth
- A01G7/045—Electric or magnetic or acoustic treatment of plants for promoting growth with electric lighting
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G9/00—Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
- A01G9/24—Devices or systems for heating, ventilating, regulating temperature, illuminating, or watering, in greenhouses, forcing-frames, or the like
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- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05D—SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
- G05D27/00—Simultaneous control of variables covered by two or more of main groups G05D1/00 - G05D25/00
- G05D27/02—Simultaneous control of variables covered by two or more of main groups G05D1/00 - G05D25/00 characterised by the use of electric means
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A40/00—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
- Y02A40/10—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
- Y02A40/25—Greenhouse technology, e.g. cooling systems therefor
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- General Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- Automation & Control Theory (AREA)
- Biodiversity & Conservation Biology (AREA)
- Botany (AREA)
- Ecology (AREA)
- Forests & Forestry (AREA)
- Cultivation Of Plants (AREA)
Abstract
The invention discloses a kind of plant intelligent breeding method, comprise the following steps:S1, the climatic information of herborization growing environment, soil information;S2, respectively by the climatic information of collection, soil information and default climatic information, default soil information compared with, and adjust according to comparative result the growing environment of plant.Plant intelligent breeding method proposed by the present invention, automatically the growing environment information of plant can be acquired and is analyzed, and when one or more of the growing environment of plant index departs from preset range, the index is adjusted to preset range in time, the growing environment of general warranty plant is maintained in optimum range, the growth efficiency and effect of plant are improved, is realized to the Intellectualized monitoring during plant cultivation and adjustment.
Description
Technical field
The present invention relates to technical field of plant cultivation, more particularly to a kind of plant intelligent breeding method.
Background technology
Traditional plant such as flowers, nursery stock etc., are cultivated using soil, are grown naturally, artificial watering, fertilizing.Also have some compared with
Big plantation employs drip irrigation technique and cultivation technique without soil.Existing cultivation technique is required for frequent mobile flowerpot to there is sun
The position of light irradiation, and easily pollution environment, artificially applying fertilizer, watering are both difficult to seize the opportunity using soil cultivation, again can not root
Appropriate dosage is determined according to the characteristic of plant, plant can only be grown by free period and can not be adjusted.Existing planting type, one
Denier, which is forgotten, correlates plant or the long period leaves plant, it is easy to cause plant growth stagnate even due to a lack of illumination and water and
Withered death.
The content of the invention
Based on technical problem existing for background technology, the present invention proposes a kind of plant intelligent breeding method.
Plant intelligent breeding method proposed by the present invention, it is characterised in that comprise the following steps:
S1, the climatic information of herborization growing environment, soil information;
S2, respectively by the climatic information of collection, soil information and default climatic information, default soil information compared with,
And the growing environment of plant is adjusted according to comparative result.
Preferably, step S1 is specifically included:
Respectively in t1、t2、t3……tnClimatic information, the soil information of moment herborization growing environment;Wherein, it is described
Climatic information includes:Temperature, intensity of illumination, humidity;The soil information includes P in soil H values, edaphon content.
Preferably, step S2 is specifically included:
Default climatic information includes preset temperature range [Tmin,Tmax], default intensity of illumination scope [Smin,Smax], it is default
Humidity range [Wmin,Wmax], presetting soil information includes default P in soil H value scopes [PHmin,PHmax], default edaphon
Content range [Lmin,Lmax];
Obtain t1、t2、t3……tnTemperature T, intensity of illumination S, humidity W, P in soil H values, the soil of moment plant growth environment
Earth content of microorganisms L, and above-mentioned T, S, W, pH value, L duration are recorded, it is designated as tT、tS、tW、tPH、tL;
As T≤TminAnd tT>t01When, increase the temperature of plant growth environment to T1;
As T >=TmaxAnd tT>t02When, the temperature of plant growth environment is reduced to T2;
As S≤SminAnd tS>t03When, increase the intensity of illumination of plant growth environment to S1;
As S >=SmaxAnd tS>t04When, the intensity of illumination of plant growth environment is reduced to S2;
As W≤WminAnd tW>t05When, increase the humidity of plant growth environment to W1;
As W >=WmaxAnd tW>t06When, the humidity of plant growth environment is reduced to W2;
As pH value≤PHminAnd tPH>t07When, increase the P in soil H values of plant growth environment to PH1;
As pH value >=PHmaxAnd tPH>t08When, the P in soil H values of plant growth environment are reduced to PH2;
As L≤LminAnd tL>t09When, increase the edaphon content of plant growth environment to L1;
As L >=LmaxAnd tL>t10When, the edaphon content of plant growth environment is reduced to L2;
Wherein, t01、t02、t03、t04、t05、t06、t07、t08、t09、t10It is preset value, T1、T2、S1、S2、W1、W2、PH1、
PH2、L1、L2It is preset value and Tmin<T1<Tmax, Tmin<T2<Tmax, Smin<S1<Smax, Smin<S2<Smax, Wmin<W1<Wmax, Wmin<
W2<Wmax, PHmin<PH1<PHmax, PHmin<PH2<PHmax, Lmin<L1<Lmax, Lmin<L2<Lmax。
Preferably, in step S1, the edaphon content includes multiple-microorganism content, is designated as L1、L2、L3……
Ln;
Preferably, in step S2, default edaphon content range specifically includes multiple-microorganism content range, is designated as
[L1min,L1max]、[L2min,L2max]、[L3min,L3max]……[Lnmin,Lnmax]。
Preferably, step S2 is specifically included:
Using the temperature of heat riser increase plant growth environment, the height of the installation site of the heat riser is less than plant
The minimum altitude of thing;The temperature of plant growth environment, the height of the installation site of the heat sink are reduced using heat sink
Higher than the maximum height of plant.
Preferably, also include after step S2:
The plantation time and plant for obtaining plant currently grow image information, and plant currently grown image information with
Default growth image is compared to obtain the growth conditions of plant, and the growth ring of plant is adjusted according to the growth conditions of plant
Border;
Preferably, image information is currently grown based on plant using infrared imagery technique, default growth image calculates plant
Thing current area M, preset area M0, and by M and M0It is compared, as M≤aM0When, the temperature of coordinate plant growth environment is extremely
TB, intensity of illumination to SB, humidity to WB, P in soil H values to PHB, edaphon content to LB;Work as aM0<M≤bM0When, respectively will
[cTB,dTB]、[cSB,dSB]、[cWB,dWB]、[cPHB,dPHB]、[cLB,dLB] strong as the temperature of plant growth environment, illumination
Degree, humidity, P in soil H values, the regulation foundation of edaphon content;Work as M>bM0When, the temperature of coordinate plant growth environment is extremely
TL, intensity of illumination to SL, humidity to WL, P in soil H values to PHL, edaphon content to LL;
Wherein, TBFor optimum temperature, SBFor optimum illumination intensity, WBFor optimum humidity, PHBFor the optimal pH value of soil, LBFor
Best soil content of microorganisms, 0<a<1, b>1,0<c<1, d>1, TLFor the minimum value of preset temperature range, SLIt is strong for default illumination
Spend the minimum value of scope, WLTo preset the minimum value of humidity range, PHLTo preset the minimum value of P in soil H value scopes, LLIt is default
The minimum value of edaphon content range.
Plant intelligent breeding method proposed by the present invention, the growing environment information of plant can be acquired automatically and
Analysis, and when one or more of the growing environment of plant index departs from preset range, in time adjust the index to pre-
If in scope, the growing environment of general warranty plant is maintained in optimum range, the growth efficiency and effect of plant are improved, is realized
To the Intellectualized monitoring during plant cultivation and adjustment.Specifically, the present invention is when detecting the index of plant growth environment, note
Record the duration of each index, and only when the duration that each index departs from preset range exceeding preset time
Just regulation is taken to act, in this way, avoiding change and the interference transience to caused by plant growth environment of outside environmental elements
Interference, improve the accuracy and validity for detecting and adjusting to plant growth environment.
Brief description of the drawings
Fig. 1 is a kind of step schematic diagram of plant intelligent breeding method.
Embodiment
As shown in figure 1, Fig. 1 is a kind of plant intelligent breeding method proposed by the present invention.
Reference picture 1, plant intelligent breeding method proposed by the present invention, comprises the following steps:
S1, the climatic information of herborization growing environment, soil information;
In present embodiment, step S1 is specifically included:
Respectively in t1、t2、t3……tnClimatic information, the soil information of moment herborization growing environment;Wherein, it is described
Climatic information includes:Temperature, intensity of illumination, humidity;The soil information includes P in soil H values, edaphon content.
Respectively in the growing environment information of n moment herborization, be advantageous in the growing environment information of record plant not
With the duration of index, facilitate in subsequent operation and the growing environment of plant is analyzed according to the duration of above-mentioned different indexs
And adjust.
S2, respectively by the climatic information of collection, soil information and default climatic information, default soil information compared with,
And the growing environment of plant is adjusted according to comparative result.
Step S2 is specifically included:
Default climatic information includes preset temperature range [Tmin,Tmax], default intensity of illumination scope [Smin,Smax], it is default
Humidity range [Wmin,Wmax], presetting soil information includes default P in soil H value scopes [PHmin,PHmax], default edaphon
Content range [Lmin,Lmax];Above-mentioned preset range is set all in accordance with different plants to the different demands of environmental information, and on
State preset range to be set based on experience value in choosing value, to improve the accuracy of choosing value, so as to adjust plant growth environment
The validity of section.
Obtain t1、t2、t3……tnTemperature T, intensity of illumination S, humidity W, P in soil H values, the soil of moment plant growth environment
Earth content of microorganisms L, and above-mentioned T, S, W, pH value, L duration are recorded, it is designated as tT、tS、tW、tPH、tL;
As T≤TminAnd tT>t01When, show that Current Temperatures are relatively low and the duration is longer, to avoid low temperature effect plant
Growth result, now increase the temperature of plant growth environment to T1;
As T >=TmaxAnd tT>t02When, show that Current Temperatures are higher and the duration is longer, to avoid life of the high temperature to plant
Growth process impacts, now the temperature of reduction plant growth environment to T2;
As S≤SminAnd tS>t03When, show that now intensity of illumination is relatively low and the duration is longer, to reduce low illumination to planting
The influence of thing growth result, then increase the intensity of illumination of plant growth environment to S1;
As S >=SmaxAnd tS>t04When, i.e., now intensity of illumination is larger and duration is longer, is planted to avoid strong shadow from ringing
The growth course of thing, the intensity of illumination of plant growth environment is reduced to S2;
As W≤WminAnd tW>t05When, show that current humidity is relatively low and the duration is longer, to avoid dry environment from influenceing to plant
The growth result of thing, now increase the humidity of plant growth environment to W1;
As W >=WmaxAnd tW>t06When, show that current humidity is higher and the duration is longer, influence to plant to reduce high humidity environment
The growth course of thing, the humidity of plant growth environment is now reduced to W2;
As pH value≤PHminAnd tPH>t07When, show current soil pH value it is relatively low and maintain time it is longer, now need
Improve the acid-base property of soil, then the P in soil H values of increase plant growth environment to PH1;
As pH value >=PHmaxAnd tPH>t08When, show that the pH value of now soil is higher and maintain the long period, to ensure
The growth result of plant is, it is necessary to which the acid-base property for adjusting soil then reduces plant growth ring to adapt to adapt to the growth course of plant
The P in soil H values in border are to PH2;
As L≤LminAnd tL>t09When, show that the content of microorganisms of now soil is relatively low, to be provided enough to plant growth
Microorganism nutrient, then increase the edaphon content of plant growth environment to L1;
As L >=LmaxAnd tL>t10When, show that the content of microorganisms of soil is higher, to avoid high Nutrient Environment to plant growth
Environment causes malicious influences, now the edaphon content of reduction plant growth environment to L2;
Wherein, t01、t02、t03、t04、t05、t06、t07、t08、t09、t10It is preset value, T1、T2、S1、S2、W1、W2、PH1、
PH2、L1、L2It is preset value and Tmin<T1<Tmax, Tmin<T2<Tmax, Smin<S1<Smax, Smin<S2<Smax, Wmin<W1<Wmax, Wmin<
W2<Wmax, PHmin<PH1<PHmax, PHmin<PH2<PHmax, Lmin<L1<Lmax, Lmin<L2<Lmax。
In present embodiment, in step S1, the edaphon content includes multiple-microorganism content, is designated as L1、L2、
L3……Ln;
Preferably, in step S2, default edaphon content range specifically includes multiple-microorganism content range, is designated as
[L1min,L1max]、[L2min,L2max]、[L3min,L3max]……[Lnmin,Lnmax];Content range is respectively provided with for multiple-microorganism, is had
Beneficial to targetedly the content of each microorganism is acquired and adjusted, to ensure comprehensive, the promotion of nutrient in soil
The good development trend of plant.
In present embodiment, step S2 is specifically included:
Using the temperature of heat riser increase plant growth environment, the height of the installation site of the heat riser is less than plant
The minimum altitude of thing;The temperature of plant growth environment, the height of the installation site of the heat sink are reduced using heat sink
Higher than the maximum height of plant;Heat riser transmits the spy transmitted from top to bottom with cold air from heat sink from bottom to top from hot gas
Property, which is set out, to be configured, and the temperature rise effect of heat riser and the cooling-down effect of heat sink is effectively improved, so as to improve
The efficiency and validity that the temperature of plant growth environment is adjusted.
In example is further carried out, also include after step S2:
The plantation time and plant for obtaining plant currently grow image information, and plant currently grown image information with
Default growth image is compared to obtain the growth conditions of plant, and the growth ring of plant is adjusted according to the growth conditions of plant
Border;The growth result of plant can be intuitively checked from the growth conditions of plant, and then targetedly to the growing environment of plant
It is adjusted, advantageously ensures that the validity of regulation process.
Preferably, image information is currently grown based on plant using infrared imagery technique, default growth image calculates plant
Thing current area M, preset area M0, and by M and M0It is compared, to analyze the current growth conditions of plant and default growth shape
Gap between state, be advantageous to that the growing environment of plant is adjusted in time when plant growth trend is poor.As M≤aM0
When, show that the area of current plant is smaller, i.e., plant growth is slower, to promote the good development trend of plant, then by plant
Growing environment index adjust to optimum state, allow it to fast-growth to normal level, then coordinate plant growth environment
Temperature to TB, intensity of illumination to SB, humidity to WB, P in soil H values to PHB, edaphon content to LB;Work as aM0<M≤bM0
When, show the current growth conditions of plant in preset level, but in order that plant maintains this growth tendency, then according to most
Good index sets the adjustable range of plant growth environment, i.e., respectively by [cTB,dTB]、[cSB,dSB]、[cWB,dWB]、[cPHB,
dPHB]、[cLB,dLB] as the temperature of plant growth environment, intensity of illumination, humidity, P in soil H values, edaphon content
Foundation is adjusted, ensures the growth result of plant by above-mentioned preset range;Work as M>bM0When, show that plant growth rate is too fast,
To avoid the reaction that too fast growth is brought, then the index of the growing environment of plant is reduced to minimum value, that is, adjusts plant life
The temperature of long environment is to TL, intensity of illumination to SL, humidity to WL, P in soil H values to PHL, edaphon content to LL;
Wherein, TBFor optimum temperature, SBFor optimum illumination intensity, WBFor optimum humidity, PHBFor the optimal pH value of soil, LBFor
Best soil content of microorganisms, 0<a<1, b>1,0<c<1, d>1, TLFor the minimum value of preset temperature range, SLIt is strong for default illumination
Spend the minimum value of scope, WLTo preset the minimum value of humidity range, PHLTo preset the minimum value of P in soil H value scopes, LLIt is default
The minimum value of edaphon content range.
The plant intelligent breeding method that present embodiment proposes, can be adopted to the growing environment information of plant automatically
Collection and analysis, and when one or more of the growing environment of plant index departs from preset range, in time adjust the index
To preset range, the growing environment of general warranty plant is maintained in optimum range, improves the growth efficiency and effect of plant,
Realize to the Intellectualized monitoring during plant cultivation and adjustment.Specifically, present embodiment is in detection plant growth environment
During index, the duration of each index is recorded, and the duration for only departing from preset range when each index exceedes
Just take regulation to act during preset time, plant growth environment is made in this way, avoiding the change of outside environmental elements and disturbing
Into transience interference, improve to plant growth environment detect and adjust accuracy and validity.
The foregoing is only a preferred embodiment of the present invention, but protection scope of the present invention be not limited thereto,
Any one skilled in the art the invention discloses technical scope in, technique according to the invention scheme and its
Inventive concept is subject to equivalent substitution or change, should all be included within the scope of the present invention.
Claims (6)
1. a kind of plant intelligent breeding method, it is characterised in that comprise the following steps:
S1, the climatic information of herborization growing environment, soil information;
S2, respectively by the climatic information of collection, soil information and default climatic information, default soil information compared with, and root
According to the growing environment of comparative result regulation plant.
2. plant intelligent breeding method according to claim 1, it is characterised in that step S1 is specifically included:
Respectively in t1、t2、t3……tnClimatic information, the soil information of moment herborization growing environment;Wherein, the weather letter
Breath includes:Temperature, intensity of illumination, humidity;The soil information includes P in soil H values, edaphon content.
3. plant intelligent breeding method according to claim 2, it is characterised in that step S2 is specifically included:
Default climatic information includes preset temperature range [Tmin,Tmax], default intensity of illumination scope [Smin,Smax], default humidity
Scope [Wmin,Wmax], presetting soil information includes default P in soil H value scopes [PHmin,PHmax], default edaphon content
Scope [Lmin,Lmax];
Obtain t1、t2、t3……tnThe temperature T of moment plant growth environment, intensity of illumination S, humidity W, P in soil H values, the micro- life of soil
Thing content L, and above-mentioned T, S, W, pH value, L duration are recorded, it is designated as tT、tS、tW、tPH、tL;
As T≤TminAnd tT>t01When, increase the temperature of plant growth environment to T1;
As T >=TmaxAnd tT>t02When, the temperature of plant growth environment is reduced to T2;
As S≤SminAnd tS>t03When, increase the intensity of illumination of plant growth environment to S1;
As S >=SmaxAnd tS>t04When, the intensity of illumination of plant growth environment is reduced to S2;
As W≤WminAnd tW>t05When, increase the humidity of plant growth environment to W1;
As W >=WmaxAnd tW>t06When, the humidity of plant growth environment is reduced to W2;
As pH value≤PHminAnd tPH>t07When, increase the P in soil H values of plant growth environment to PH1;
As pH value >=PHmaxAnd tPH>t08When, the P in soil H values of plant growth environment are reduced to PH2;
As L≤LminAnd tL>t09When, increase the edaphon content of plant growth environment to L1;
As L >=LmaxAnd tL>t10When, the edaphon content of plant growth environment is reduced to L2;
Wherein, t01、t02、t03、t04、t05、t06、t07、t08、t09、t10It is preset value, T1、T2、S1、S2、W1、W2、PH1、PH2、
L1、L2It is preset value and Tmin<T1<Tmax, Tmin<T2<Tmax, Smin<S1<Smax, Smin<S2<Smax, Wmin<W1<Wmax, Wmin<W2<
Wmax, PHmin<PH1<PHmax, PHmin<PH2<PHmax, Lmin<L1<Lmax, Lmin<L2<Lmax。
4. plant intelligent breeding method according to claim 3, it is characterised in that in step S1, the micro- life of soil
Thing content includes multiple-microorganism content, is designated as L1、L2、L3……Ln;
Preferably, in step S2, default edaphon content range specifically includes multiple-microorganism content range, is designated as
[L1min,L1max]、[L2min,L2max]、[L3min,L3max]……[Lnmin,Lnmax]。
5. plant intelligent breeding method according to claim 3, it is characterised in that step S2 is specifically included:
Using the temperature of heat riser increase plant growth environment, the height of the installation site of the heat riser is less than plant
Minimum altitude;The temperature of plant growth environment is reduced using heat sink, the height of the installation site of the heat sink is higher than
The maximum height of plant.
6. according to the plant intelligent breeding method described in claim any one of 1-5, it is characterised in that also wrapped after step S2
Include:
The plantation time and plant for obtaining plant currently grow image information, and plant is currently grown into image information with presetting
Growth image is compared to obtain the growth conditions of plant, and the growing environment of plant is adjusted according to the growth conditions of plant;
Preferably, image information is currently grown based on plant using infrared imagery technique, default growth image calculates plant and worked as
Above accumulate M, preset area M0, and by M and M0It is compared, as M≤aM0When, the temperature of coordinate plant growth environment to TB, light
According to intensity to SB, humidity to WB, P in soil H values to PHB, edaphon content to LB;Work as aM0<M≤bM0When, respectively by [cTB,
dTB]、[cSB,dSB]、[cWB,dWB]、[cPHB,dPHB]、[cLB,dLB] it is used as the temperature of plant growth environment, intensity of illumination, wet
Degree, P in soil H values, the regulation foundation of edaphon content;Work as M>bM0When, the temperature of coordinate plant growth environment to TL, illumination
Intensity is to SL, humidity to WL, P in soil H values to PHL, edaphon content to LL;
Wherein, TBFor optimum temperature, SBFor optimum illumination intensity, WBFor optimum humidity, PHBFor the optimal pH value of soil, LBTo be optimal
Edaphon content, 0<a<1, b>1,0<c<1, d>1, TLFor the minimum value of preset temperature range, SLTo preset intensity of illumination model
The minimum value enclosed, WLTo preset the minimum value of humidity range, PHLTo preset the minimum value of P in soil H value scopes, LLTo preset soil
The minimum value of content of microorganisms scope.
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CN108738920A (en) * | 2018-06-22 | 2018-11-06 | 苏州仁益生物科技有限公司 | A kind of self-adjustable plant growth system |
CN108901348A (en) * | 2018-07-17 | 2018-11-30 | 中国铁建重工集团有限公司 | A kind of cotton picker control method, system, device and readable storage medium storing program for executing |
CN111122476A (en) * | 2019-12-16 | 2020-05-08 | 苏州易云生物科技有限公司 | Greenhouse agricultural environment adjusting method based on biological detection |
CN113197035A (en) * | 2021-04-21 | 2021-08-03 | 宁夏红双赢粮油食品有限公司 | Seedling breeding method, device and system for selenium-enriched rice |
CN113273466A (en) * | 2021-06-01 | 2021-08-20 | 陈婧雯 | Special economic crop cultivation method capable of intelligently simulating growth environment |
CN114600725A (en) * | 2022-02-23 | 2022-06-10 | 青岛海尔空调器有限总公司 | Plant cultivation method controlled through air conditioner, air conditioner and plant cultivation system |
Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1318282A (en) * | 2001-03-29 | 2001-10-24 | 中国科学院合肥智能机械研究所 | Intelligent Control System of Greenhouse Group |
CN201594181U (en) * | 2010-02-09 | 2010-09-29 | 高明亮 | Intelligent control device for plant growth environment |
CN104503518A (en) * | 2014-11-28 | 2015-04-08 | 北京中农腾达科技有限公司 | Small intelligent plant growing system |
CN204929770U (en) * | 2015-09-23 | 2016-01-06 | 嘉兴职业技术学院 | The adjusting device of remote controlled plant growth environment |
-
2017
- 2017-09-27 CN CN201710889199.1A patent/CN107787769A/en not_active Withdrawn
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
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