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WO2018032282A1 - Procédé de surveillance de plantation de fleurs dotée d'une fonction d'affichage d'image - Google Patents

Procédé de surveillance de plantation de fleurs dotée d'une fonction d'affichage d'image Download PDF

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Publication number
WO2018032282A1
WO2018032282A1 PCT/CN2016/095389 CN2016095389W WO2018032282A1 WO 2018032282 A1 WO2018032282 A1 WO 2018032282A1 CN 2016095389 W CN2016095389 W CN 2016095389W WO 2018032282 A1 WO2018032282 A1 WO 2018032282A1
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WIPO (PCT)
Prior art keywords
soil
flower
image display
display function
flower planting
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Ceased
Application number
PCT/CN2016/095389
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English (en)
Chinese (zh)
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武克易
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Individual
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Individual
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Priority to PCT/CN2016/095389 priority Critical patent/WO2018032282A1/fr
Publication of WO2018032282A1 publication Critical patent/WO2018032282A1/fr
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Ceased legal-status Critical Current

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D21/00Measuring or testing not otherwise provided for
    • G01D21/02Measuring two or more variables by means not covered by a single other subclass
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/84Systems specially adapted for particular applications

Definitions

  • the invention relates to the field of intelligent hardware technology, and more particularly to a flower planting monitoring method with image display function.
  • Flower planting can beautify the environment and cultivate sentiment. With the improvement of people's living standards, urban or township residents like to plant various potted plants at home. However, some plant varieties do not grow well in any environment, and many people cannot grow smoothly due to lack of professional planting knowledge.
  • the existing soil tester and moisture tester are industrial use, and the professional field cannot help the user's flower planting.
  • many families What users need is direct targeted planting advice, such as real-time lighting, temperature and humidity, soil nutrients, moisture and other data collection and planting methods for each flower in the home.
  • the technical problem to be solved by the present invention is to provide a flower planting monitoring method with an image display function for the above-mentioned drawbacks of the prior art.
  • the monitored flower planting status data includes: flower growth brightness data, environmental temperature data, soil moisture data, soil pH and soil nutrient content data;
  • the method for monitoring flower planting with image display function according to the present invention, wherein the method further comprises the steps of:
  • the flower growth photograph is compared with the same flower simultaneous growth photograph.
  • the method for monitoring flower planting with image display function according to the present invention, wherein the method further comprises the steps of:
  • the method for monitoring flower planting with image display function according to the present invention, wherein the method further comprises the steps of:
  • the method for monitoring flower planting with image display function according to the present invention, wherein the method further comprises the steps of:
  • the method for monitoring flower planting with image display function according to the present invention, wherein the method further comprises the steps of:
  • the plant growth curve is drawn according to the brightness value detected by the photosensor, and compared with the standard ambient photometric values suitable for the current planting plant, to determine whether the current ambient luminosity is suitable for plant growth.
  • the method for monitoring flower planting with image display function according to the present invention, wherein the method further comprises the steps of:
  • the soil nutrient change curve is recorded and plotted, and compared with the standard soil nutrient value suitable for the current planting plant to determine whether the current soil is suitable for plant growth.
  • the method for monitoring flower planting with image display function according to the present invention, wherein the method further comprises the steps of:
  • the humidity change curve is recorded and plotted, and compared with the standard humidity value suitable for the current planting plant to determine whether the current soil is suitable for plant growth.
  • the invention has the beneficial effects of collecting and analyzing real-time photos and other environmental parameters of each flower in the home, judging whether it is in the most suitable growth environment, and providing the user with the best planting suggestions through the system.
  • FIG. 1 is a flow chart of a flower planting monitoring method with an image display function according to a preferred embodiment of the present invention
  • FIG. 2 is a schematic structural view of a home flower planting monitor according to a preferred embodiment of the present invention.
  • FIG. 3 is a schematic block diagram of a home flower planting monitor according to a preferred embodiment of the present invention.
  • FIG. 4 is a block diagram showing the principle of a data processor of a home flower planting monitor according to a preferred embodiment of the present invention.
  • FIG. 1 The flow of the flower planting monitoring method with image display function according to the preferred embodiment of the present invention is shown in FIG. 1 and includes the following steps:
  • Step S10 monitoring flower planting status data
  • the monitored flower planting status data includes: flower growth brightness data, environmental temperature data, soil moisture data, soil acidity and soil nutrient content data;
  • Step S20 taking a photo of the flower growth at a set time, and storing the photo
  • Step S30 sending a flower growth photo to the user terminal and displaying.
  • the above flower plant monitoring method with image display function further comprises the steps of: drawing a soil pH-time curve.
  • the above flower plant monitoring method with image display function further comprises the steps of: drawing a soil pH-humidity curve.
  • the above flower plant monitoring method with image display function further comprises the steps of: drawing a soil pH-soil nutrient curve.
  • the above-mentioned flower planting monitoring method with image display function further comprises the steps of: drawing a plant growth curve according to the brightness value detected by the photosensor, and comparing with the standard ambient photometric value suitable for the current planting plant to determine whether the current ambient luminosity is suitable for plant growth. .
  • the above flower plant monitoring method with image display function further comprises the steps of:
  • the soil nutrient change curve is recorded and compared with the standard soil nutrient value suitable for the current planting plant to determine whether the current soil is suitable for plant growth.
  • the above flower plant monitoring method with image display function further comprises the steps of:
  • the humidity curve is recorded and plotted, and compared with the standard humidity value suitable for the planting plant, it is judged whether the current soil is suitable for plant growth.
  • FIG. 2 The structure of the home flower planting monitor of the preferred embodiment of the present invention is as shown in FIG. 2 , and the principle is as shown in FIG. 3 , which includes a sealed casing 10 , a PCB board is disposed in the casing 10 , and a photosensitive sensor 41 is disposed on the PCB board. a temperature sensor 44 for detecting an ambient temperature value, a soil nutrient meter 42 for detecting soil nutrients, and a humidity sensor 43 for detecting a soil moisture value; and a photosensor 41 and a soil nutrient meter 42 are further disposed on the PCB.
  • the PCB board is provided with one or more detecting electrodes 20 for facilitating insertion into the soil, and the detecting electrode 20 extends out of the housing And the connection between the detecting electrode 20 and the outer casing 10 is sealed; the PCB board is further connected with a shooting module 60, and the shooting module 60 is connected to the outer casing by a telescopic and bendable connecting rod 61.
  • the program can collect and analyze the real-time illuminance, temperature and humidity, soil nutrient, moisture and other data of each flower in the home to determine whether it is in the most suitable growth environment, and provide users with the best planting suggestions through the system.
  • the data processor 30 includes an image buffer unit 34 connected to the photographing module 60.
  • the outer cover of the shooting module 60 is provided with a sunscreen waterproof layer to prevent the imaging module from aging or being damaged.
  • the photographing module 60 is detachably coupled to the outer casing 10 via a connecting rod 61 for storage or replacement.
  • the monitored flower planting status data includes: flower growth brightness data, environmental temperature data, soil moisture data, and soil nutrient content data.
  • the flower growth brightness data includes the brightness of the environment in which the flower is located within 24 hours a day.
  • Monitoring including brightness values and spectral analysis values, can be used to analyze whether the flowers grow in a suitable light environment.
  • the ambient temperature data includes air temperature data and soil temperature data.
  • data such as ambient temperature difference and temperature-light brightness curve can be analyzed.
  • the above soil nutrient content information through the detection of nutrient content in the soil, can draw a curve of soil nutrient content continuously changing with time, which is convenient for prompting the user to optimize the fertilization period and avoid excessive lack of nutrition or overnutrition of flowers.
  • the above flower planting status data also includes soil pH, and the pH value of the soil is measured by a pH meter to obtain continuous soil pH, and the soil pH-time curve, soil pH-humidity curve, soil pH-soil nutrient can be drawn.
  • the curve is provided to the user, making it easy for the user to balance the optimal conditions for flower growth.
  • the data processor 30 includes: a data sampling unit 31 connected to the photosensitive sensor, the temperature sensor, the soil nutrient meter, and the humidity sensor; and is connected to the data sampling unit 31.
  • a plurality of sampling channels for different sensors are respectively provided, including: a photometric value sampling channel, a temperature value sampling channel, a soil nutrient sampling channel, and a humidity value sampling channel.
  • the data analyzing unit 33 includes: a photometric analysis comparing subunit for drawing a plant growth curve according to the brightness value detected by the photosensor, and the standard ambient photometric value suitable for the current planting plant. Comparative analysis to determine whether current ambient luminosity is suitable for plant growth. Because different plants need different luminosity, some Xiyang, some hi-yin, when the illuminance is too strong or too dark, may affect the normal growth of plants. Illumination of the growth environment of plants Monitoring can provide reasonable advice to users.
  • the data analysis unit further comprises: a soil nutrient analysis and comparison unit, configured to record and map the soil nutrient change curve according to the soil nutrient value detected by the soil nutrient meter, and to present the plant with the current plant
  • a soil nutrient analysis and comparison unit configured to record and map the soil nutrient change curve according to the soil nutrient value detected by the soil nutrient meter, and to present the plant with the current plant
  • a suitable standard soil nutrient value comparison analysis to determine whether the current soil is suitable for plant growth.
  • the soil nutrient change curve is recorded and plotted according to the soil nutrient value detected by the soil nutrient analyzer, and is currently
  • a comparative analysis of the standard soil nutrient values suitable for planting plants can determine whether the current soil is suitable for plant growth and provide reasonable advice to users.
  • the data analysis unit further comprises: a soil moisture analysis and comparison unit, configured to record and draw a humidity change curve according to the soil nutrient value detected by the humidity sensor, and is suitable for the current planting standard.
  • a comparative analysis of humidity values to determine whether the current soil is suitable for plant growth.
  • the soil moisture demand is also different, and during the planting process, the soil environment changes with the change of the external environment temperature and humidity, and records and changes are recorded by the soil moisture value detected by the humidity sensor.
  • the curve compared with the standard soil moisture value suitable for the current planting plant, can determine whether the current soil is suitable for plant growth and provide reasonable advice to the user.
  • a battery module is further disposed on the PCB board.
  • the battery module is a CR2032 button battery, and the battery module is disposed in the waterproof battery compartment, and the waterproof design around the battery compartment can achieve IP5 waterproof rating to avoid water in the flower planting process.
  • two detecting electrodes are disposed on the PCB.
  • the longitudinal cross-sectional shape of the outer casing is semicircular, square or circular.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Cultivation Of Plants (AREA)

Abstract

L'invention concerne un procédé de surveillance de plantation de fleurs dotée d'une fonction d'affichage d'image, consistant : à surveiller des données de condition de plantation de fleurs (S10), les données de condition de plantation de fleurs surveillées comprenant : des données de luminance de croissance de fleurs, des données de température de l'environnement, des données d'humidité du sol, des valeurs de pH du sol et des données de teneur en nutriments du sol ; à prendre une photo de la croissance des fleurs à un moment défini et à stocker ladite photo de la croissance des fleurs (S20) ; à envoyer la photo de la croissance des fleurs à un terminal d'utilisateur et à afficher ladite photo de la croissance des fleurs (S30) ; à mesurer les teneurs en nutriments du sol, et à tracer une courbe où la teneur en nutriments du sol change en continu au fil du temps ; à tracer une courbe de valeur de pH du sol-temps ; et à tracer une courbe de valeur de pH-humidité du sol. Le procédé permet d'acquérir et d'analyser des photos en temps réel et d'autres paramètres environnementaux de chaque fleur à domicile, de déterminer si les fleurs croissent dans l'environnement le plus approprié, et de fournir à un utilisateur des suggestions de plantation optimales sur un système.
PCT/CN2016/095389 2016-08-15 2016-08-15 Procédé de surveillance de plantation de fleurs dotée d'une fonction d'affichage d'image Ceased WO2018032282A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2016/095389 WO2018032282A1 (fr) 2016-08-15 2016-08-15 Procédé de surveillance de plantation de fleurs dotée d'une fonction d'affichage d'image

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2016/095389 WO2018032282A1 (fr) 2016-08-15 2016-08-15 Procédé de surveillance de plantation de fleurs dotée d'une fonction d'affichage d'image

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WO2018032282A1 true WO2018032282A1 (fr) 2018-02-22

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115127693A (zh) * 2022-06-30 2022-09-30 浙江天演维真网络科技股份有限公司 一种基于农产品作物生长环境温度监测系统
CN115759783A (zh) * 2022-11-30 2023-03-07 深圳市朗文科技实业有限公司 一种植物种植参数调整方法、装置、电子设备及介质

Citations (10)

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Publication number Priority date Publication date Assignee Title
WO2002084248A2 (fr) * 2001-04-13 2002-10-24 Phytech Ltd. Systeme et procede pour la surveillance de plantes
CN201935904U (zh) * 2010-12-18 2011-08-17 西安联友电子科技有限公司 一种温室环境实时监测分析及同步显示装置
CN103634573A (zh) * 2013-12-11 2014-03-12 青岛海尔软件有限公司 能够采集紫外线和图像信息的盆栽花卉远程检测系统
CN103644939A (zh) * 2013-12-11 2014-03-19 青岛海尔软件有限公司 具有摄像功能的盆栽花卉远程检测系统
CN104236624A (zh) * 2014-07-25 2014-12-24 江苏永联现代农业发展有限公司 温室环境信息智能采集系统
CN104238602A (zh) * 2014-07-25 2014-12-24 江苏永联现代农业发展有限公司 基于信息采集的温室环境智能控制管理系统
CN104281084A (zh) * 2013-07-05 2015-01-14 台达电子工业股份有限公司 状态监控系统
US20150142324A1 (en) * 2013-11-21 2015-05-21 Shuza Binzaid Healthbeat of plants
CN105630045A (zh) * 2015-12-28 2016-06-01 北京联合大学 一种智能养花系统和方法
CN106153117A (zh) * 2016-08-15 2016-11-23 武克易 具有图像显示功能的花卉种植监测方法

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2002084248A2 (fr) * 2001-04-13 2002-10-24 Phytech Ltd. Systeme et procede pour la surveillance de plantes
CN201935904U (zh) * 2010-12-18 2011-08-17 西安联友电子科技有限公司 一种温室环境实时监测分析及同步显示装置
CN104281084A (zh) * 2013-07-05 2015-01-14 台达电子工业股份有限公司 状态监控系统
US20150142324A1 (en) * 2013-11-21 2015-05-21 Shuza Binzaid Healthbeat of plants
CN103634573A (zh) * 2013-12-11 2014-03-12 青岛海尔软件有限公司 能够采集紫外线和图像信息的盆栽花卉远程检测系统
CN103644939A (zh) * 2013-12-11 2014-03-19 青岛海尔软件有限公司 具有摄像功能的盆栽花卉远程检测系统
CN104236624A (zh) * 2014-07-25 2014-12-24 江苏永联现代农业发展有限公司 温室环境信息智能采集系统
CN104238602A (zh) * 2014-07-25 2014-12-24 江苏永联现代农业发展有限公司 基于信息采集的温室环境智能控制管理系统
CN105630045A (zh) * 2015-12-28 2016-06-01 北京联合大学 一种智能养花系统和方法
CN106153117A (zh) * 2016-08-15 2016-11-23 武克易 具有图像显示功能的花卉种植监测方法

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115127693A (zh) * 2022-06-30 2022-09-30 浙江天演维真网络科技股份有限公司 一种基于农产品作物生长环境温度监测系统
CN115759783A (zh) * 2022-11-30 2023-03-07 深圳市朗文科技实业有限公司 一种植物种植参数调整方法、装置、电子设备及介质

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