WO2012100482A1 - Intelligent-type household plant production system - Google Patents

Intelligent-type household plant production system Download PDF

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Publication number
WO2012100482A1
WO2012100482A1 PCT/CN2011/075147 CN2011075147W WO2012100482A1 WO 2012100482 A1 WO2012100482 A1 WO 2012100482A1 CN 2011075147 W CN2011075147 W CN 2011075147W WO 2012100482 A1 WO2012100482 A1 WO 2012100482A1
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WO
WIPO (PCT)
Prior art keywords
liquid
led
tank
production system
light source
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2011/075147
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French (fr)
Chinese (zh)
Inventor
魏灵玲
杨其长
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Ieda Protected Horticulture Co Ltd
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Beijing Ieda Protected Horticulture Co Ltd
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Publication of WO2012100482A1 publication Critical patent/WO2012100482A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/14Greenhouses
    • A01G9/16Dismountable or portable greenhouses ; Greenhouses with sliding roofs
    • 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
    • Y02P60/20Reduction of greenhouse gas [GHG] emissions in agriculture, e.g. CO2
    • Y02P60/21Dinitrogen oxide [N2O], e.g. using aquaponics, hydroponics or efficiency measures

Definitions

  • the utility model relates to an intelligent family plant production system, in particular to a miniature plant production factory for household use, belonging to a plant planting and vegetable production device in the field of agricultural machinery.
  • the plant production system is the highest level of plant cultivation. It provides the best environment for plant growth and development. It integrates fully automatic and intelligent environment simulation technology to create the best artificial environment for plant growth and development.
  • the vegetables produced are of high quality and good yield. It has the advantage that traditional cultivation mode can't match.
  • the current plant production system has a single planting space, which can only meet the needs of a single plant growth, and cannot meet the simultaneous growth of various plants that require different growth conditions. Therefore, the development of an intelligent home plant production system suitable for the simultaneous growth of a plurality of plants under different conditions has become an urgent problem to be solved by those skilled in the art. Summary of the invention
  • the utility model aims to provide an intelligent home plant production system.
  • the intelligent home plant production system of the utility model is a miniature plant production system developed for the family, adopting a fully enclosed intelligent environment control system, which isaki and beautiful. Convenient and practical, intelligent control, management Will. It can not only meet the basic needs of people's daily life for vegetable products, but also serve as a green ornament for family life, an air purifier, and a natural oxygen bar to achieve a low-carbon, intelligent, environmentally friendly and healthy life.
  • this family vegetable production system can be widely used in areas with harsh climates and areas that are not suitable for plant growth, such as desertification areas, marine ships, and north and south poles, to meet the needs of special groups, to solve non-cultivable human survival. The problem contributes.
  • An intelligent family plant production system comprising a body rejecting body, refusing to set up a hydroponic cultivation and nutrient solution automatic circulation system, an air conditioning system, a artificial light supplement system and an intelligent control system, wherein the reject body comprises a bright room, a dark room, and a bottom layer And the back interlayer, the artificial light-filling system adopts an LED plant light source panel composed of a red LED, a blue LED and a green LED to artificially fill light.
  • the bright room is a leafy vegetable growing room, and is divided into three layers of cultivation space, and a hydroponic cultivation device and a artificial light supplementing system are arranged in each layer of the cultivation space.
  • the dark room is divided into a nursery room and a mushroom growing room, and the mushroom growing room is divided into three layers of mushroom culture layers, and a hydroponic cultivation device and a artificial light supplementing system are respectively arranged.
  • the mushroom growing room is also provided with an ultraviolet disinfecting lamp and an automatic humidifying device to avoid the spread of fungi and ensure the humidity requirement of the mushroom growth.
  • the leafy growth room, the nursery room and the mushroom growth zone respectively have different temperature control systems, and the temperature division zone control can be realized according to the needs of different plants.
  • An independent fresh air system is set up between the leafy growth room, the nursery room and the mushroom growth room.
  • the fresh air system includes two small fans of 15 watts.
  • the installation method is positive and negative, controlled by PLC, according to the data collected by the carbon dioxide sensor. , control the working time of the fan to control the concentration of carbon dioxide.
  • Each growth space has an independent fresh air system that can replace the gas in the growth chamber with the indoor gas, forming a natural oxygen bar in the living space.
  • An air conditioning system, a nutrient tank, and a water pump are installed in the bottom layer of the reject body, and the door is pulled outward.
  • the air conditioning system includes a fan and a compressor unit.
  • the back side of the body is provided with an interlayer, a liquid supply pipe and a liquid return pipe are arranged in the interlayer, and an air outlet hole is arranged on the back of the interlayer, and the thickness of the interlayer is 10 cm. There are wheels at the bottom of the body.
  • the hydroponic cultivation and nutrient solution automatic circulation system includes hydroponic cultivation tank, planting cover plate, nutrient liquid tank, water pump, liquid supply pipe, liquid return pipe, detector, PLC, automatic dosing system and nutrition
  • the liquid-strength drainage pipeline is provided with a liquid supply hole, a liquid return hole and a liquid level display hole respectively, and a liquid discharge hole is arranged on the bottom surface
  • the planting cover plate is provided with a planting hole, and is placed in the liquid
  • the water pump is placed in the nutrient tank, and the bottom end of the liquid supply pipe is connected with the water pump.
  • the nutrient solution flows into the hydroponic cultivation tank through the liquid supply pipe, and then flows back to the nutrient liquid tank through the liquid return pipe, and the liquid is automatically dispensed.
  • the system is connected to the nutrient tank through a pipeline, and the strong drain line is connected to the liquid supply pipe, and a strong exhaust valve is installed thereon.
  • the hydroponic cultivation tank is 10 cm deep, the pore diameter of the liquid supply hole and the liquid return hole is 3-8 cm, and the pore diameter of the liquid discharge hole is 3-6 cm.
  • the planting cover plate is provided with a planting hole, the diameter of the planting hole is 2.5cm, and the spacing is 10cm, and the plant can be directly planted in the planting hole.
  • the hydroponic cultivation tank is made of stainless steel or PVC material, and the planting cover plate is made of PVC or stainless steel.
  • the LED plant fill light board and the hydroponic cultivation device can be installed and disassembled in a drawer type, which can be easily cleaned and converted into a large fruit and vegetable growth space and operated.
  • the automatic dosing system comprises a dosing tank and a metering pump, and the dosing tank is connected to the metering pump through a pipeline, and the dosing pump is connected to the nutrient tank through a pipeline.
  • the nutrient solution can be automatically formulated.
  • a liquid supply valve is installed on the liquid supply pipe.
  • the feed flow rate can be adjusted.
  • the nutrient liquid automatic circulation system further comprises a stirring line, one end of the stirring line is connected to the liquid supply pipe near the nutrient liquid tank, the other end is connected to the nutrient liquid tank, and the stirring line is installed on the stirring line.
  • the nutrient solution automatic circulation system further includes a water supply line connected to the nutrient tank, on which the feed water valve is installed.
  • the detector can monitor the pH, EC, dissolved oxygen, liquid level and other indicators of the nutrient solution in the tank in real time, and transfer various monitoring data to the PLC, and control the automatic dosing system through PLC to realize the adjustment of various parameters. To ensure that the parameters are adapted to the growth and development needs of vegetables.
  • the artificial light-filling system comprises an LED plant light source panel, a light detector and a PLC, wherein the LED plant light source panel is composed of a light source panel body and a controller, and the light source panel body and the controller are connected through a communication interface, and the light source panel body There are several red LEDs, blue LEDs and green LEDs, which are installed on top of each cultivation room of the intelligent home plant production system.
  • the artificial light-filling system further comprises a light-board heat-dissipating system, comprising two small fans of 15 watts, the installation method is one positive and one reverse, controlled by PLC, according to the fixed time program, to control the start and stop of the fan, to achieve Light board cooling function.
  • a light-board heat-dissipating system comprising two small fans of 15 watts
  • the installation method is one positive and one reverse, controlled by PLC, according to the fixed time program, to control the start and stop of the fan, to achieve Light board cooling function.
  • the red LED of the LED plant light source plate has a wavelength of 660 ⁇ 20 nm, and the maximum luminous intensity is 220 ⁇ 1 ⁇ -2 ⁇ -1; the wavelength of the blue LED is 450 ⁇ 20 nm, and the maximum luminous intensity is 43 ⁇ 1 ⁇ -2 ⁇ -1; The wavelength of the green LED is 550 ⁇ 20 nm, and the maximum luminous intensity is 17 mol.m-2.sl.
  • the light source panel body is provided with a temperature sensor. When the light source board body is used, the fan is turned on, and the light source board body is cooled.
  • the red LED, the blue LED and the green LED are arranged at intervals, and the ratio of the number of the red LED, the blue LED and the green LED is 8:1:1.
  • a light detector In the cultivation room of the intelligent home plant production system for growing vegetables, a light detector is provided, and the light detector can collect the light intensity, the illumination frequency, the illumination period and the like of the light source during the process of filling the plant, and transmit the information.
  • PLC can adjust the light source indicators in real time according to the optimal illumination parameters set according to the plant growth characteristics in advance, so that the various light indicators are suitable for plant growth and development requirements.
  • the LED plant light source board and the hydroponic cultivation device are all installed on the reject body by using a pulling structure, and can be installed and disassembled in a drawer type, can be conveniently cleaned and converted into several large cultivation fruits to be grown into a large fruit and vegetable type. Space, operating the single.
  • the intelligent control system includes a sensor, a PLC (programmable logic controller), a human-machine interaction interface and an actuator, and the sensor, the human-machine interaction interface and the actuator are respectively connected to the PLC.
  • the sensor includes a pH sensor, an EC (conductivity) sensor, a liquid level sensor, a liquid temperature sensor, a humidity sensor, a temperature sensor, a carbon dioxide sensor, a light sensor, and the like.
  • the human-computer interaction interface is an HMI (Human Machine Interface) display.
  • the actuator includes a fill light device, a liquid supply and drainage device, and an environmental control device.
  • the intelligent control system also includes a camera and a monitor, and the camera is connected to the monitor via a network. The camera is installed in the cultivation room of the intelligent home plant production system and remotely monitored by a monitor.
  • Each planting space can be controlled by the temperature zone according to the needs of different plants, and the mushroom has an independent humidity control system;
  • Each growth space has an independent fresh air system, which can replace the gas in the growth chamber with the gas in the room, and form a natural oxygen bar in the living space;
  • Automatic control of liquid return It can automatically adjust the time of supply and return, ensure the automation and humanized control of the hydroponic circulation system, and has a low water level alarm function;
  • Automatic lighting control precise control of the lighting cycle;
  • Light board cooling system It can effectively dissipate 60% of the heat of the light board, reduce the air conditioning load, and achieve the effect of energy saving and emission reduction;
  • Automatic nutrient solution detection system It can automatically detect the EC/pH value of the nutrient solution and remind the user to change the time of the nutrient solution.
  • the growth period of leafy plants is greatly shortened.
  • the harvesting period of fruit plants is early, the harvest period is prolonged, and the yield is significantly increased.
  • the growth of leafy vegetables is suitable for the growth of about 50 leafy vegetables, the growth period is 20 ⁇ 25 days; 70 seedlings can be raised simultaneously in the nursery, the seedling time is about 20 days; the mushroom is divided into three layers, the growth time is about 30 days, but the month Produce fresh mushrooms 3-5 kg.
  • Adopting LED plant light source board composed of red, blue and green LEDs to artificially fill light. Green light is the most sensitive color for people. Adding green light can prevent pure red light and blue light from being exposed for a long time.
  • the phenomenon of eye coloration reducing the pollution of plant artificial light source to the human eye, can achieve the effect of sharing light source between human and vegetable, and is a measure of sharing light source to reduce household energy consumption.
  • the utility model adopts a novel artificial light source to improve the illuminating performance of the illumination source in the plant production system, improve the utilization of the light energy, reduce the heat dissipation, and reduce the power consumption cost.
  • the light source intensity, red, blue and green light ratio, frequency and photoperiod can be precisely adjusted to achieve precise control of the artificial light source in the plant production system.
  • the micro-vegetable production and production system can regulate various environmental factors through various environmental control systems in a closed environment, so that plants can grow under the most suitable environmental conditions, such as light, temperature, humidity, moisture, nutrition, C02 and other environmental conditions. They all reach the most suitable state for plant growth, and the vegetables produced are strong, with high yield and good quality.
  • the vegetables grown in the confined space are completely isolated from the outside world during the growth process, effectively preventing the pathogens and greatly reducing the incidence of pests and diseases, so that the production of vegetables without pesticides can be achieved, thereby achieving pollution-free,
  • the standard for the production of pollution-free green vegetables In addition, this confined environment protects vegetables from the external environment, and changes in external environmental conditions such as light, temperature, humidity, and CO 2, regardless of seasons and climates, do not change the environmental conditions inside the vegetable production system. Development is not affected at all, and periodic production can be achieved systematically.
  • this system realizes intelligent control and automatic management, greatly reduces labor, greatly reduces labor intensity and labor time, is a guarantee for healthy and nutritious diet of family life in the future, and is a must for the comfortable and convenient life of modern families.
  • Products can also be used as a green ornament for family life, air purifiers, natural oxygen bar and so on.
  • the family vegetable production system can meet the optimal growth and development environment requirements for vegetables. Through convenient operation and intelligent control, it can produce fresh, green and pollution-free vegetables to meet the needs of household daily diet and vegetables.
  • Figure 1 is a schematic view showing the structure of an intelligent home plant production system.
  • Intelligent home plant production system including refusal, refusal to set up hydroponic cultivation equipment, nutrient solution automatic circulation system, air conditioning system, artificial fill light system and intelligent control system.
  • the intelligent home plant production system rejects the body, size: 100cmx85cmx 190cm, the basic material is stainless steel.
  • the structure of the intelligent home plant production system is shown in Figure 1, where 1 is the bright room, 2 is the dark room, 3 is the human-computer interaction interface, 4 is the bottom layer, and 5 is the planting cover.
  • the reject body includes the bright room 1, the dark room 2, the bottom layer 4 and the back interlayer, and the artificial light-filling system used in the bright room 1 and the dark room 2 is a red light LED,
  • the LED plant fill light panel composed of blue LED and green LED is artificially filled with light.
  • the bright room 1 is a leafy vegetable growing room, which is divided into three layers of cultivation space, and each of the cultivation spaces is provided with a hydroponic cultivation device and a artificial light-filling system.
  • the size of each layer of cultivation space is 55cmxl20cmx70cm; there are 6 new family-specific LED plant fill light boards (15W per watt, 48V power supply) above each floor.
  • Each layer of lights can be freely disassembled for easy installation; Set up hydroponic cultivation equipment and artificial light-filling system, and plant 16 leafy vegetables per planting board.
  • the dark room 2 is divided into a nursery room and a mushroom growing room, and a hydroponic cultivation device and a artificial light supplementing system are respectively provided.
  • a human-computer interaction interface is arranged on the upper part of the darkroom door.
  • the size of the nursery room is 40cmx50cmx70cm, and there are 3 new family-specific LED plant fill light boards (15W per watt, 48V power supply), and about 70 seedlings.
  • Mushroom growth room, the specification is 40cmx80cmx70cm, there are two fluorescent lamps on the upper part and one ultraviolet disinfection lamp (to avoid the spread of fungi), and an automatic humidification device is also provided; this space is divided into three layers of mushroom culture layer, which can produce fresh mushrooms 3-5 per month. jin. While ensuring the humidity requirements of mushroom growth, it also avoids the spread of fungi.
  • An independent fresh air system is set up between the leafy growth room, the nursery room and the mushroom growth room, that is, two 15 watt small fans are set up, controlled by PLC, and the installation method is positive and negative. According to the data collected by the carbon dioxide sensor, the fan is controlled. Working time to control the concentration of carbon dioxide.
  • Each growth space has an independent fresh air system that can replace the gas in the growth chamber with the indoor gas, forming a natural oxygen bar in the living space.
  • An air conditioning system, a nutrient tank and a water pump are installed in the bottom layer of the rejecting body, and the door can be pulled outwards, and the condition of the air conditioning system and the nutrient tank and the operation of the pump can be checked at any time.
  • the air conditioning system consists of a wind turbine and a compressor unit.
  • the back side of the body is provided with a sandwich layer, and the liquid supply pipe and the liquid return pipe are arranged in the interlayer, and the back of the interlayer is provided with an air outlet, and the thickness of the interlayer is 10 cm.
  • a hydroponic cultivation device and a nutrient supply and return pipe are provided in each cultivation space of the bright room 1 and the dark room 2.
  • the hydroponic cultivation device comprises a hydroponic cultivation tank and a planting cover plate 5, and the hydroponic cultivation tank is connected with the nutrient liquid tank through the liquid supply pipe and the liquid return pipe to realize automatic supply of the nutrient solution.
  • the hydroponic cultivation tank is 10 cm deep, and is provided with a liquid supply hole, a liquid return hole and a liquid level display hole, respectively.
  • Each layer of hydroponic cultivation trough is on the back side
  • the liquid supply hole and the liquid return hole having a hole diameter of 3 cm are provided, and the liquid supply hole is directly connected with the liquid supply pipe, and the liquid return hole is directly connected with the liquid return pipe, thereby realizing the supply and discharge of the nutrient solution.
  • the planting cover 5 is provided with a fixing hole.
  • the diameter of the planting hole is 2.5 cm and the spacing is 10 cm, and the plant can be directly planted in the planting hole.
  • the hydroponic cultivation tank and the planting cover 5 are made of stainless steel or PVC material, and the material is a high-density foam material.
  • the LED plant fill light board and the hydroponic cultivation device can be installed and disassembled in a drawer type, which can be easily cleaned and converted into several large cultivation space for the growth space of the fruit and vegetable.
  • the nutrient solution automatic circulation system of the intelligent family plant production system includes a hydroponic cultivation device, a nutrient solution tank, a water pump, a liquid supply pipe, a liquid return pipe, a detector, a PLC, an automatic dosing system, and a nutrient liquid strong drainage line, etc. It realizes automatic circulation of nutrient solution, automatic preparation of nutrient solution and automatic control of liquid level.
  • the nutrient tank is located at the lowermost level of the intelligent home plant production system.
  • the water pump is placed in the nutrient tank, and the liquid supply pipe and the liquid return pipe are arranged side by side in the longitudinal direction of the cultivation chamber.
  • the bottom end of the liquid supply pipe is connected with the water pump, and the other end is connected with the liquid supply hole on the hydroponic cultivation tank of each cultivation room, and the nutrient solution is directly circulated through the liquid supply pipe to the hydroponic cultivation tank of the plant cultivation room to realize the supply of plant nutrition.
  • One end of the liquid return pipe is connected with the liquid return hole on the hydroponic cultivation tank of each cultivation room, and the bottom end is connected with the nutrient liquid tank. When the liquid level exceeds a certain height, the excess nutrient solution flows directly back to the nutrient liquid tank through the liquid return pipe, thereby Realize automatic liquid return and circulation of nutrient solution.
  • a supply valve is provided on each of the supply pipes to adjust the flow rate of the supply.
  • the supply pipe and the return pipe are UP VC pipes.
  • the automatic dosing system is connected to the nutrient tank through a pipeline.
  • the automatic dosing system includes a dosing tank and a metering pump.
  • the dosing tank is connected to the metering pump through a pipeline.
  • the dosing pump is connected to the nutrient tank through a pipeline, and the nutrient solution can be automatically prepared.
  • the liquid distribution tank is respectively equipped with liquid A, liquid B and liquid C. Each liquid distribution tank is connected to the metering pump.
  • the dose pump is directly connected to the nutrient liquid tank through the pipeline.
  • the dose pump will be The component solution flows directly into the nutrient solution tank to realize automatic preparation of the nutrient solution.
  • the system is provided with a strong drainage line for nutrient solution, connected to the supply pipe, and a strong discharge valve is installed thereon. Forced discharge of nutrient solution can be achieved. When the nutrient solution needs to be replaced, the strong discharge valve is opened to achieve the forced discharge of the nutrient solution.
  • the nutrient tank has the highest liquid level and the lowest liquid level. When the nutrient liquid level is higher than the highest liquid level, the system will forcibly discharge the nutrient solution. When the liquid level is lower than the minimum liquid level, the system will carry out the nutrient solution. Automatic Supply.
  • the system is also provided with a stirring line, one end of which is connected to the liquid supply pipe near the nutrient liquid tank, the other end is connected to the nutrient liquid tank, and a stirring valve is installed on the stirring line.
  • the mixing valve is opened, and the prepared nutrient solution can be stirred to make the various nutrient distribution systems uniform.
  • the system is also provided with a water supply line, and the feed water line is connected to the nutrient tank, and a water supply valve is installed thereon.
  • the water supply pipeline is arranged at one end of the nutrient solution tank. By controlling the water supply valve, water can be directly flowed into the nutrient solution to achieve dilution of the high concentration nutrient solution.
  • the detector can monitor the pH, EC, dissolved oxygen, liquid level and other indicators of the nutrient solution in the tank in real time, and transfer various monitoring data to the PLC, and control the automatic dosing system through PLC to realize the adjustment of various parameters. Ensure that the parameters are adapted to the growth and development needs of vegetables.
  • the artificial light filling system comprises an LED plant light source board, a light detector and a PLC
  • the LED plant light source board is composed of a light source board body and a controller, the light source board body and the controller are connected by a communication interface, and the light source board body is provided with a plurality of red light LED, blue LED and green LED, plant light source panels are installed on top of each floor of the intelligent home plant production system.
  • the light detector is placed in the cultivation room, and the appropriate light intensity, light quality, photoperiod and other parameters are set by the intelligent control system according to the characteristics of the plant illumination demand.
  • the light detector collects information such as the light intensity, illumination frequency, and illumination period of the light source during the process of filling the plant, and transmits the information to the PLC at the top of the intelligent home plant production system.
  • the optimal illumination parameters set by the growth characteristics are real-time, and the PLC regulates various indicators of the light source, so that various light indicators are suitable for plant growth and development requirements.
  • the artificial fill light system also sets the light board cooling system, including two 15 watt small fans.
  • the installation method is positive and negative. It is controlled by PLC. According to the fixed time program, the fan starts and stops to achieve the heat dissipation of the light board.
  • the red LED of the LED plant light source plate has a wavelength of 660 nm, the maximum luminous intensity is 220 ⁇ 1 ⁇ -2 ⁇ -1; the wavelength of the blue LED is 450 nm, and the maximum luminous intensity is 43 ⁇ 1 ⁇ -2 ⁇ -1;
  • the green LED has a wavelength of 550 nm and a maximum luminous intensity of 17 mol.m-2.sl.
  • a temperature sensor is disposed on the body of the light source board.
  • the light source plate body is further provided with a plurality of fans, and the light source plate body is cooled.
  • the red, blue, and green LEDs are spaced apart from each other, and the ratio of red, blue, and green LEDs is 8: 1: 1.
  • Intelligent control system for intelligent home plant production systems including sensors, PLCs (programmable The logic controller), the human-machine interface and the actuator, the sensor, the human-machine interface and the actuator are respectively connected to the PLC.
  • the sensor includes a pH sensor, an EC (conductivity) sensor, a level sensor, a humidity sensor, a temperature sensor, a carbon dioxide sensor, a light sensor, and the like.
  • the human-machine interface is an HMI (Human Machine Interface) display.
  • Actuators include light-filling devices, supply and return water and water supply and drainage devices, and environmental control devices.
  • the intelligent control system intelligently controls various environmental factors in the intelligent home plant production system.
  • the sensors of various environmental factors can monitor the pH, EC, liquid level, humidity, temperature, carbon dioxide, illumination, etc.
  • the HMI display is a touch screen that displays real-time data and historical data on the touch screen.
  • the system parameters suitable for plant growth and development can be set on the touch screen, and the PLC can properly process the collected data according to the set system parameters, and adjust and control the light filling device, the supply and return liquid, the water supply and drainage device and the environmental control device. , to make various environmental parameters meet the requirements of plant growth and development, to achieve system flexibility and adjustability.
  • the control system includes a camera and a monitor, and the camera is connected to the monitor via a network.
  • a 360-degree camera probe is installed at the top corner of each cultivation room of the intelligent home plant production system.
  • the captured images are transmitted to the PC via the network, enabling remote image transmission and real-time monitoring of intelligent home plant production through remote PCs.
  • the smart home plant production system uses a single and convenient process, including:
  • the first step fill each planting tank with nutrient solution water, and after filling the water tank, start the liquid supply and return system;
  • Step 2 Implement planting work
  • Step 3 Open the total control system and select the planting type.

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Hydroponics (AREA)
  • Cultivation Of Plants (AREA)

Abstract

An intelligent-type plant household production system includes a cabinet. In the cabinet, it is provided with a hydroponic device, an automatic nutrient solution circulating system, an air conditioning system, an artificial light supplement system and an intelligent control system. The cabinet includes a bright room (1), a dark room (2), a bottom layer (4) and a back interlayer. The artificial light supplement system includes a light source plate for plant comprised of a red LED, a blue LED and a green LED. The system is suitable for wide plant varieties, and increases the yield significantly.

Description

智能型家庭植物生产系统 本申请要求于 2011 年 1 月 26 日提交中国专利局、 申请号为 201120024851.1、 发明名称为"智能型家庭植物工厂"的中国专利申请的优 先权, 其全部内容通过引用结合在本申请中。 技术领域  Intelligent Home Plant Production System This application claims priority to Chinese Patent Application No. 201120024851.1, entitled "Intelligent Family Plant Factory", filed on January 26, 2011, the entire contents of which are incorporated by reference. In this application. Technical field

本实用新型涉及一种智能型家庭植物生产系统, 具体为一种家庭用的 微型植物生产工厂, 属于农业机械领域的植物种植及蔬菜生产装置。  The utility model relates to an intelligent family plant production system, in particular to a miniature plant production factory for household use, belonging to a plant planting and vegetable production device in the field of agricultural machinery.

背景技术 Background technique

随着人们生活水平的逐步提高及对食物需求的改变, 健康、 绿色、 环 保、 便捷的生活方式越来越受重视, 卫生、 营养、 健康的食物愈来愈受到 人们的喜爱, 其中绿色无公害、 新鲜洁净的蔬菜产品对人们的现代生活尤 为重要。 而如何快捷的生产这种蔬菜成为人们关注的重要话题。  With the gradual improvement of people's living standards and changes in food demand, healthy, green, environmentally friendly and convenient lifestyles are gaining more and more attention. Health, nutrition and healthy foods are increasingly loved by people, among which green pollution-free Fresh and clean vegetable products are especially important for people's modern life. How to produce this vegetable quickly has become an important topic of concern.

植物生产系统是植物栽培的最高境界, 它为植物提供了生长发育的最 佳环境, 集成了全自动、 全智能的环境模拟技术为植物的生长与发育创造 出最佳的人工环境, 是完全可控可调、 按照人的意志进行管理的一种生产 模式。 它是集约化最高的一种农业生产方式, 采用完全工厂化流程式作业 的生产模式, 规避了外界气候因子的一切干扰, 实现了栽培环境的精确模 拟, 所生产的蔬菜品质高、 产量好, 具有传统栽培模式无法比拟的优势。 但是目前的植物生产系统种植空间单一, 只能满足单一植物生长的需要, 不能满足需要不同生长条件的多种植物的同时生长。 因此, 开发一种适合 不同条件的多种植物同时生长的智能型家庭植物生产系统成为本领域技术 人员急需解决的问题。 发明内容  The plant production system is the highest level of plant cultivation. It provides the best environment for plant growth and development. It integrates fully automatic and intelligent environment simulation technology to create the best artificial environment for plant growth and development. A production mode in which the control is adjustable and managed according to the will of the person. It is the most intensive agricultural production mode. It adopts the production mode of fully factory-processed operation, avoids all interference from external climate factors, and achieves accurate simulation of the cultivation environment. The vegetables produced are of high quality and good yield. It has the advantage that traditional cultivation mode can't match. However, the current plant production system has a single planting space, which can only meet the needs of a single plant growth, and cannot meet the simultaneous growth of various plants that require different growth conditions. Therefore, the development of an intelligent home plant production system suitable for the simultaneous growth of a plurality of plants under different conditions has become an urgent problem to be solved by those skilled in the art. Summary of the invention

本实用新型的目的是提供一种智能型家庭植物生产系统, 本实用新型 的智能型家庭植物生产系统是针对家庭开发的一种微型植物生产系统, 采 用全封闭式智能环境控制系统, 精巧美观, 便捷实用, 智能操控、 管理方 便。 既可很好的满足人们日常生活对蔬菜产品的基本需要, 还可以作为家 庭生活的绿色装饰品、 空气净化器、 天然氧吧, 实现低碳、 智能、 环保、 健康的生活。 另外,这种家庭蔬菜生产系统可以广泛应用于气候环境恶劣, 不适合植物生长的区域, 如沙漠化地域、 海洋舰艇、 南北极地等特殊地带, 从而满足特殊群体的需求, 为解决非可耕地人类生存问题做出贡献。 The utility model aims to provide an intelligent home plant production system. The intelligent home plant production system of the utility model is a miniature plant production system developed for the family, adopting a fully enclosed intelligent environment control system, which is exquisite and beautiful. Convenient and practical, intelligent control, management Will. It can not only meet the basic needs of people's daily life for vegetable products, but also serve as a green ornament for family life, an air purifier, and a natural oxygen bar to achieve a low-carbon, intelligent, environmentally friendly and healthy life. In addition, this family vegetable production system can be widely used in areas with harsh climates and areas that are not suitable for plant growth, such as desertification areas, marine ships, and north and south poles, to meet the needs of special groups, to solve non-cultivable human survival. The problem contributes.

为实现本实用新型的目的, 采取以下技术方案:  In order to achieve the object of the present invention, the following technical solutions are adopted:

一种智能型家庭植物生产系统, 包括拒体, 拒体内设置水耕栽培及营 养液自动循环系统、 空调系统、 人工补光系统和智能控制系统, 所述的拒 体包括明室、 暗室、 底层和背部夹层, 所述的人工补光系统采用由红光 LED, 蓝光 LED和绿光 LED构成的 LED植物光源板进行人工补光。  An intelligent family plant production system, comprising a body rejecting body, refusing to set up a hydroponic cultivation and nutrient solution automatic circulation system, an air conditioning system, a artificial light supplement system and an intelligent control system, wherein the reject body comprises a bright room, a dark room, and a bottom layer And the back interlayer, the artificial light-filling system adopts an LED plant light source panel composed of a red LED, a blue LED and a green LED to artificially fill light.

所述明室为叶菜类生长间, 分为三层栽培空间, 每层栽培空间内设置 水耕栽培装置和人工补光系统。  The bright room is a leafy vegetable growing room, and is divided into three layers of cultivation space, and a hydroponic cultivation device and a artificial light supplementing system are arranged in each layer of the cultivation space.

所述的暗室分为育苗间和蘑菇生长间, 蘑菇生长间分为三层蘑菇培养 层, 分别设置水耕栽培装置和人工补光系统。  The dark room is divided into a nursery room and a mushroom growing room, and the mushroom growing room is divided into three layers of mushroom culture layers, and a hydroponic cultivation device and a artificial light supplementing system are respectively arranged.

所述的蘑菇生长间还设置紫外线消毒灯和自动加湿装置, 可避免菌类 传播, 保证蘑菇生长对湿度的要求。  The mushroom growing room is also provided with an ultraviolet disinfecting lamp and an automatic humidifying device to avoid the spread of fungi and ensure the humidity requirement of the mushroom growth.

所述的叶菜类生长间、 育苗间和蘑菇生长间分别具有不同的温度控制 系统, 可根据不同植物的需要实现分温区控制。  The leafy growth room, the nursery room and the mushroom growth zone respectively have different temperature control systems, and the temperature division zone control can be realized according to the needs of different plants.

所述的叶菜类生长间、育苗间和蘑菇生长间分别设置独立的新风系统, 新风系统包括两个 15瓦的小型风扇, 安装方式一正一反, 用 PLC控制, 根据二氧化碳传感器的采集数据, 控制风扇的工作时间, 来控制二氧化碳 浓度。 每个生长空间都有独立的新风系统, 可实现生长间内的气体与室内 气体的置换, 在生活空间内形成一个天然氧吧。  An independent fresh air system is set up between the leafy growth room, the nursery room and the mushroom growth room. The fresh air system includes two small fans of 15 watts. The installation method is positive and negative, controlled by PLC, according to the data collected by the carbon dioxide sensor. , control the working time of the fan to control the concentration of carbon dioxide. Each growth space has an independent fresh air system that can replace the gas in the growth chamber with the indoor gas, forming a natural oxygen bar in the living space.

所述拒体的底层内安装空调系统、 营养液箱和水泵, 具有可向外拉的 门。 所述的空调系统包括风机和压缩机组。 所述拒体的背面设有夹层, 夹 层内设置供液管和回液管, 夹层背部设有出气孔, 夹层厚度为 10cm。 拒体 的最底部设有轮子。  An air conditioning system, a nutrient tank, and a water pump are installed in the bottom layer of the reject body, and the door is pulled outward. The air conditioning system includes a fan and a compressor unit. The back side of the body is provided with an interlayer, a liquid supply pipe and a liquid return pipe are arranged in the interlayer, and an air outlet hole is arranged on the back of the interlayer, and the thickness of the interlayer is 10 cm. There are wheels at the bottom of the body.

所述的水耕栽培及营养液自动循环系统包括水耕栽培槽、 定植盖板、 营养液箱、 水泵、 供液管、 回液管、 检测器、 PLC、 自动配液系统和营养 液强排管线, 所述的水耕栽培槽分别设有供液孔、 回液孔及液位显示孔, 在底面上设有排液孔,所述定植盖板上设有定植孔,放置在水耕栽培槽上, 水泵置于营养液箱内, 供液管底端与水泵连接, 营养液通过供液管流入水 耕栽培槽中, 再通过回液管流回营养液箱, 自动配液系统通过管线与营养 液箱相连, 强排管线与供液管相连, 其上安装强排阀门。 The hydroponic cultivation and nutrient solution automatic circulation system includes hydroponic cultivation tank, planting cover plate, nutrient liquid tank, water pump, liquid supply pipe, liquid return pipe, detector, PLC, automatic dosing system and nutrition The liquid-strength drainage pipeline is provided with a liquid supply hole, a liquid return hole and a liquid level display hole respectively, and a liquid discharge hole is arranged on the bottom surface, and the planting cover plate is provided with a planting hole, and is placed in the liquid On the hydroponic cultivation tank, the water pump is placed in the nutrient tank, and the bottom end of the liquid supply pipe is connected with the water pump. The nutrient solution flows into the hydroponic cultivation tank through the liquid supply pipe, and then flows back to the nutrient liquid tank through the liquid return pipe, and the liquid is automatically dispensed. The system is connected to the nutrient tank through a pipeline, and the strong drain line is connected to the liquid supply pipe, and a strong exhaust valve is installed thereon.

所述的水耕栽培槽深 10cm, 所述的供液孔和回液孔的孔径为 3-8cm, 排液孔的孔径为 3-6cm。 所述定植盖板上设有定植孔, 定植孔的直径为 2.5cm, 间距为 10cm, 可将植物直接定植在定植孔内。 所述的水耕栽培槽 为不锈钢或 PVC材料制成, 所述的定植盖板为 PVC或不锈钢材料制成。 LED植物补光灯板和水耕栽培装置均可进行抽屉式的安装和拆卸, 可方便 清洗及将几层栽培空间改装成为一个大的果菜类的生长空间 , 操作筒单。  The hydroponic cultivation tank is 10 cm deep, the pore diameter of the liquid supply hole and the liquid return hole is 3-8 cm, and the pore diameter of the liquid discharge hole is 3-6 cm. The planting cover plate is provided with a planting hole, the diameter of the planting hole is 2.5cm, and the spacing is 10cm, and the plant can be directly planted in the planting hole. The hydroponic cultivation tank is made of stainless steel or PVC material, and the planting cover plate is made of PVC or stainless steel. The LED plant fill light board and the hydroponic cultivation device can be installed and disassembled in a drawer type, which can be easily cleaned and converted into a large fruit and vegetable growth space and operated.

所述的自动配液系统包括配液箱和计量泵, 配液箱通过管线与计量泵 相连, 剂量泵通过管线与营养液箱相连。 营养液可以实现自动配制。  The automatic dosing system comprises a dosing tank and a metering pump, and the dosing tank is connected to the metering pump through a pipeline, and the dosing pump is connected to the nutrient tank through a pipeline. The nutrient solution can be automatically formulated.

所述的供液管上安装供液阀门。 可以对供液流速进行调节。 所述的营 养液自动循环系统还包括搅拌管线, 所述的搅拌管线一端连接在靠近营养 液箱的供液管上, 另一端与营养液箱相连, 搅拌管线上安装搅拌阀门。 所 述的营养液自动循环系统还包括给水管线,所述给水管线与营养液箱相连, 其上安装给水阀门。 检测器可实时监测箱体内营养液的 pH、 EC、 溶氧、 液位等各项指标, 并将各种监测数据传送到 PLC, 通过 PLC对自动配液系 统进行控制, 实现各项参数的调节,保证各项参数适应蔬菜生长发育需求。  A liquid supply valve is installed on the liquid supply pipe. The feed flow rate can be adjusted. The nutrient liquid automatic circulation system further comprises a stirring line, one end of the stirring line is connected to the liquid supply pipe near the nutrient liquid tank, the other end is connected to the nutrient liquid tank, and the stirring line is installed on the stirring line. The nutrient solution automatic circulation system further includes a water supply line connected to the nutrient tank, on which the feed water valve is installed. The detector can monitor the pH, EC, dissolved oxygen, liquid level and other indicators of the nutrient solution in the tank in real time, and transfer various monitoring data to the PLC, and control the automatic dosing system through PLC to realize the adjustment of various parameters. To ensure that the parameters are adapted to the growth and development needs of vegetables.

所述的人工补光系统包括 LED植物光源板、光照检测器和 PLC,所述 的 LED植物光源板由光源板本体和控制器组成,光源板本体和控制器通过 通信接口相连接,光源板本体设有若干个红光 LED、蓝光 LED和绿光 LED , 所述的植物光源板安装在智能型家庭植物生产系统每层栽培室的顶部。  The artificial light-filling system comprises an LED plant light source panel, a light detector and a PLC, wherein the LED plant light source panel is composed of a light source panel body and a controller, and the light source panel body and the controller are connected through a communication interface, and the light source panel body There are several red LEDs, blue LEDs and green LEDs, which are installed on top of each cultivation room of the intelligent home plant production system.

所述的人工补光系统还设置灯板散热系统, 包括两个 15 瓦的小型风 扇, 安装方式一正一反, 用 PLC控制, 根据固定化的时间程序, 来控制风 扇的起停, 来达到灯板散热功能。  The artificial light-filling system further comprises a light-board heat-dissipating system, comprising two small fans of 15 watts, the installation method is one positive and one reverse, controlled by PLC, according to the fixed time program, to control the start and stop of the fan, to achieve Light board cooling function.

所述的 LED植物光源板的红光 LED的波长为 660±20nm,最大发光强 度为 220 μιηο1·ιη-2·δ-1; 蓝光 LED的波长为 450±20nm, 最大发光强度为 43 μιηο1·ιη-2·δ-1; 绿光 LED 的波长为 550±20nm , 最大发光强度为 17 mol.m-2.s-l。所述的光源板本体上设有温度传感器。所述的光源板本体 时,即开启风扇,对光源板本体进行降温处理。所述的红光 LED、蓝光 LED 和绿光 LED相互间隔排列,红光 LED、蓝光 LED和绿光 LED的数量比例 为 8: 1 : 1。 The red LED of the LED plant light source plate has a wavelength of 660±20 nm, and the maximum luminous intensity is 220 μιηο1·ιη-2·δ-1; the wavelength of the blue LED is 450±20 nm, and the maximum luminous intensity is 43 μιηο1·ιη-2·δ-1; The wavelength of the green LED is 550±20 nm, and the maximum luminous intensity is 17 mol.m-2.sl. The light source panel body is provided with a temperature sensor. When the light source board body is used, the fan is turned on, and the light source board body is cooled. The red LED, the blue LED and the green LED are arranged at intervals, and the ratio of the number of the red LED, the blue LED and the green LED is 8:1:1.

在智能型家庭植物生产系统供蔬菜生长的栽培室内设有光照检测器, 光照检测器在为植物补光过程中, 可以收集光源的光照强度、 光照频率、 光照周期等信息, 并将这些信息传输到智能型家庭植物生产系统顶部的 PLC内, PLC可按照预先根据植物生长特性设定的最佳光照参数实时对光 源各项指标进行调控, 使各项光照指标适合植物生长发育要求。  In the cultivation room of the intelligent home plant production system for growing vegetables, a light detector is provided, and the light detector can collect the light intensity, the illumination frequency, the illumination period and the like of the light source during the process of filling the plant, and transmit the information. In the PLC at the top of the intelligent home plant production system, PLC can adjust the light source indicators in real time according to the optimal illumination parameters set according to the plant growth characteristics in advance, so that the various light indicators are suitable for plant growth and development requirements.

所述的 LED植物光源板和水耕栽培装置均采用抽拉结构安装在拒体 上, 可进行抽屉式的安装和拆卸, 可方便清洗及将几层栽培空间改装成为 一个大的果菜类的生长空间, 操作筒单。  The LED plant light source board and the hydroponic cultivation device are all installed on the reject body by using a pulling structure, and can be installed and disassembled in a drawer type, can be conveniently cleaned and converted into several large cultivation fruits to be grown into a large fruit and vegetable type. Space, operating the single.

所述的智能控制系统, 包括传感器、 PLC (可编程逻辑控制器)、 人机 交互界面和执行机构,传感器、人机交互界面和执行机构分别与 PLC相连。 所述的传感器包括 pH传感器、 EC (电导率)传感器、 液位传感器、 液温 传感器、 湿度传感器、 温度传感器、 二氧化碳传感器、 光照传感器等。 所 述的人机交互界面为 HMI (人机界面)显示屏。 所述的执行机构包括补光 装置、 供回液和给排水装置及环境控制装置等。 智能控制系统还包括摄像 头和监控器, 摄像头通过网络与监控器相连。 摄像头安装在智能型家庭植 物生产系统的栽培室内, 通过监视器实现远端监控。  The intelligent control system includes a sensor, a PLC (programmable logic controller), a human-machine interaction interface and an actuator, and the sensor, the human-machine interaction interface and the actuator are respectively connected to the PLC. The sensor includes a pH sensor, an EC (conductivity) sensor, a liquid level sensor, a liquid temperature sensor, a humidity sensor, a temperature sensor, a carbon dioxide sensor, a light sensor, and the like. The human-computer interaction interface is an HMI (Human Machine Interface) display. The actuator includes a fill light device, a liquid supply and drainage device, and an environmental control device. The intelligent control system also includes a camera and a monitor, and the camera is connected to the monitor via a network. The camera is installed in the cultivation room of the intelligent home plant production system and remotely monitored by a monitor.

本实用新型的特点:  The features of the utility model:

( 1 )每个种植空间都可按不同植物的需要实现分温区控制,且蘑菇间 带有独立湿度控制系统;  (1) Each planting space can be controlled by the temperature zone according to the needs of different plants, and the mushroom has an independent humidity control system;

( 2 )每个生长空间都有独立的新风系统,可实现生长间内的气体与室 内气体的置换, 在生活空间内形成一个天然氧吧;  (2) Each growth space has an independent fresh air system, which can replace the gas in the growth chamber with the gas in the room, and form a natural oxygen bar in the living space;

( 3 )供回液自动控制: 可自行精准的调控供回液时间, 保障水培循环 系统的自动化及人性化控制, 并带有低水位报警功能; ( 4 ) 光照自动控: 可精准的控制光照周期; (3) Automatic control of liquid return: It can automatically adjust the time of supply and return, ensure the automation and humanized control of the hydroponic circulation system, and has a low water level alarm function; (4) Automatic lighting control: precise control of the lighting cycle;

( 5 )灯板散热系统: 可有效散出灯板 60%的热量, 减小空调负载, 实现节能减排的作用;  (5) Light board cooling system: It can effectively dissipate 60% of the heat of the light board, reduce the air conditioning load, and achieve the effect of energy saving and emission reduction;

( 6 ) 营养液自动检测系统: 可自动对营养液的 EC/pH值进行实施检 测, 并提醒用户更换养液的时间。  (6) Automatic nutrient solution detection system: It can automatically detect the EC/pH value of the nutrient solution and remind the user to change the time of the nutrient solution.

有益效果:  Beneficial effects:

1、 可按计划生产, 不受周围环境影响、 周年均衡稳定生产, 叶类植物 的生育期大幅度缩短, 果类植物的始收期提早、 收获期延长、 产量显著提 高。 叶菜类生长间适合约 50棵叶菜生长, 生长期 20~25 天; 育苗间可同 步育苗 70棵, 育苗时间: 20天左右; 蘑菇间分为三层, 生长时间 30天左 右, 可月产鲜蘑菇 3-5斤。  1. It can be produced according to plan, is not affected by the surrounding environment, and has an equilibrium and stable production. The growth period of leafy plants is greatly shortened. The harvesting period of fruit plants is early, the harvest period is prolonged, and the yield is significantly increased. The growth of leafy vegetables is suitable for the growth of about 50 leafy vegetables, the growth period is 20~25 days; 70 seedlings can be raised simultaneously in the nursery, the seedling time is about 20 days; the mushroom is divided into three layers, the growth time is about 30 days, but the month Produce fresh mushrooms 3-5 kg.

2、机械化和自动化程度高, 全方位的生长环境控制系统, 大大降低劳 动强度, 操作环境舒适、 轻松。 采用植物在线监控系统, 可实时对植物生 长进行远程监控, 管理方便。 通过电子触摸屏可实现对箱体内部环境因子 的自动调控。  2, high degree of mechanization and automation, a full range of growth environment control system, greatly reducing labor intensity, operating environment is comfortable and easy. The plant online monitoring system enables real-time remote monitoring of plant growth and easy management. Automatic adjustment of the internal environmental factors of the cabinet can be achieved through the electronic touch screen.

3、 生长环境无病虫害, 因而不施用农药, 清洁卫生。 蔬菜安全卫生, 不受季节限制, 产量稳定, 质量优良。  3. The growing environment is free from pests and diseases, so no pesticides are applied and clean. Vegetables are safe and hygienic, not subject to seasonal restrictions, stable yields and good quality.

4、 可生产出稀有、 价高、 营养丰富的植物产品, 种植品种广, 包括各 类叶菜、 果菜、 苗芽菜、 食用菌类、 药草香料类和观赏类果詭植物等。  4, can produce rare, high-priced, nutrient-rich plant products, planting a wide variety, including various types of leafy vegetables, fruits and vegetables, sprouts, edible fungi, herbs and spices and ornamental fruit plants.

5、 改善生活环境, 增加趣味乐趣, 融入自然健康的有机互动之中。 外 观设计精美, 可与家居生活完美地融合在一起。 可连续使用, 经济方便。 无需土壤, 洁净高效, 自动管理, 无需日常养护。  5. Improve the living environment, add fun and fun, and integrate into the organic interaction of natural health. Beautifully designed, it blends perfectly with your home life. It can be used continuously and economically convenient. No soil, clean and efficient, automatic management, no need for daily maintenance.

6、 采用由红光、蓝光和绿光 LED构成的 LED植物光源板进行人工补 光, 绿光是人感觉最敏感的颜色, 加入绿光可防止单纯红光和蓝光长时间 照射, 所导致人眼却色现象, 减少植物人工光源对人眼的污染, 可达到人 与菜共享光源的效果, 是一项光源共享减少家庭能耗的措施。 本实用新型 采用新型人工光源, 改善植物生产系统内照明光源的发光性能, 提高光能 利用率, 减少散热, 降低耗电成本。 并可精确调节光源的发光强度、 红蓝 绿光比例、 频率与光周期, 实现植物生产系统内人工光源的精准调控。 本微型蔬菜生产生产系统可以在封闭的环境中, 通过各个环境控制系 统对各个环境因子的调控, 使植物在最适宜的环境条件下生长, 光照、 温 度、 湿度、 水分、 营养、 C02等环境条件都达到植物生长最适合状态, 生 产的蔬菜茁壮, 产量高、 品质好。 此外, 在密闭的空间中生长的蔬菜, 植 物在生长的过程中与外界完全隔离, 有效防止了病菌, 大大减小了病虫害 的发生几率, 因此可以实现蔬菜无农药的生产, 从而达到无污染、 无公害 绿色蔬菜生产的标准。 此外, 这种密闭的环境, 使蔬菜不受外界环境的影 响, 不管季节和气候导致的光照、 温度、 湿度、 C02等外部环境条件的改 变都不会改变蔬菜生产系统内部的环境条件, 植物生长发育不会受到丝毫 影响, 可实现周期性连续生产系统化生产。 此外, 这种系统实现了智能化 控制、 自动化管理, 极大减少了劳动力, 极大降低了劳动强度和劳动时间, 是未来家庭生活的健康营养饮食的保证, 是现代家庭舒适便捷生活的必备 品, 还可以作为家庭生活的绿色装饰品、 空气净化器、 天然氧吧等。 6. Adopting LED plant light source board composed of red, blue and green LEDs to artificially fill light. Green light is the most sensitive color for people. Adding green light can prevent pure red light and blue light from being exposed for a long time. The phenomenon of eye coloration, reducing the pollution of plant artificial light source to the human eye, can achieve the effect of sharing light source between human and vegetable, and is a measure of sharing light source to reduce household energy consumption. The utility model adopts a novel artificial light source to improve the illuminating performance of the illumination source in the plant production system, improve the utilization of the light energy, reduce the heat dissipation, and reduce the power consumption cost. The light source intensity, red, blue and green light ratio, frequency and photoperiod can be precisely adjusted to achieve precise control of the artificial light source in the plant production system. The micro-vegetable production and production system can regulate various environmental factors through various environmental control systems in a closed environment, so that plants can grow under the most suitable environmental conditions, such as light, temperature, humidity, moisture, nutrition, C02 and other environmental conditions. They all reach the most suitable state for plant growth, and the vegetables produced are strong, with high yield and good quality. In addition, the vegetables grown in the confined space are completely isolated from the outside world during the growth process, effectively preventing the pathogens and greatly reducing the incidence of pests and diseases, so that the production of vegetables without pesticides can be achieved, thereby achieving pollution-free, The standard for the production of pollution-free green vegetables. In addition, this confined environment protects vegetables from the external environment, and changes in external environmental conditions such as light, temperature, humidity, and CO 2, regardless of seasons and climates, do not change the environmental conditions inside the vegetable production system. Development is not affected at all, and periodic production can be achieved systematically. In addition, this system realizes intelligent control and automatic management, greatly reduces labor, greatly reduces labor intensity and labor time, is a guarantee for healthy and nutritious diet of family life in the future, and is a must for the comfortable and convenient life of modern families. Products, can also be used as a green ornament for family life, air purifiers, natural oxygen bar and so on.

综合上述因素, 本家庭蔬菜生产系统可以为蔬菜满足最适生长发育环 境要求, 通过便捷操作, 智能的控制, 可以生产出新鲜、 绿色无公害蔬菜, 满足家庭日常生活饮食对蔬菜的需求。  Based on the above factors, the family vegetable production system can meet the optimal growth and development environment requirements for vegetables. Through convenient operation and intelligent control, it can produce fresh, green and pollution-free vegetables to meet the needs of household daily diet and vegetables.

下面通过附图和具体实施方式对本实用新型做进一步说明, 但并不意 味着对本实用新型保护范围的限制。  The invention will be further described with reference to the drawings and specific embodiments, but is not intended to limit the scope of the invention.

附图说明 DRAWINGS

图 1为智能型家庭植物生产系统的结构示意图。  Figure 1 is a schematic view showing the structure of an intelligent home plant production system.

具体实施方式 detailed description

智能型家庭植物生产系统, 包括拒体, 拒体内设置水耕栽培装置、 营 养液自动循环系统、 空调系统、 人工补光系统和智能控制系统。 智能型家 庭植物生产系统拒体, 尺寸: 100cmx85cmx 190cm, 基本材料为不锈钢材 料。 智能型家庭植物生产系统的结构如图 1所示, 其中 1为明室, 2为暗 室, 3为人机交互界面, 4为底层, 5为定植盖板。 拒体包括明室 1、 暗室 2、底层 4和背部夹层,明室 1和暗室 2采用的人工补光系统为由红光 LED、 蓝光 LED和绿光 LED构成的 LED植物补光灯板进行人工补光。 Intelligent home plant production system, including refusal, refusal to set up hydroponic cultivation equipment, nutrient solution automatic circulation system, air conditioning system, artificial fill light system and intelligent control system. The intelligent home plant production system rejects the body, size: 100cmx85cmx 190cm, the basic material is stainless steel. The structure of the intelligent home plant production system is shown in Figure 1, where 1 is the bright room, 2 is the dark room, 3 is the human-computer interaction interface, 4 is the bottom layer, and 5 is the planting cover. The reject body includes the bright room 1, the dark room 2, the bottom layer 4 and the back interlayer, and the artificial light-filling system used in the bright room 1 and the dark room 2 is a red light LED, The LED plant fill light panel composed of blue LED and green LED is artificially filled with light.

明室 1为叶菜类生长间, 分为三层栽培空间, 每层栽培空间内设置水 耕栽培装置和人工补光系统。 每层栽培空间的规格为 55cmxl20cmx70cm; 每层上方有 6盏新式家庭专用 LED植物补光灯板(每盏 15瓦, 48V供电), 每层灯板可自由拆卸, 方便安装; 每层栽培空间内设置水耕栽培装置和人 工补光系统, 每层种植板可种植 16颗叶菜类蔬菜。  The bright room 1 is a leafy vegetable growing room, which is divided into three layers of cultivation space, and each of the cultivation spaces is provided with a hydroponic cultivation device and a artificial light-filling system. The size of each layer of cultivation space is 55cmxl20cmx70cm; there are 6 new family-specific LED plant fill light boards (15W per watt, 48V power supply) above each floor. Each layer of lights can be freely disassembled for easy installation; Set up hydroponic cultivation equipment and artificial light-filling system, and plant 16 leafy vegetables per planting board.

暗室 2分为育苗间和蘑菇生长间, 分别设置水耕栽培装置和人工补光 系统。暗室门的上部设置人机交互界面 3。育苗间规格为 40cmx50cmx70cm, 上部有 3盏新式家庭专用 LED植物补光灯板(每盏 15瓦, 48V供电), 可 育苗 70颗左右。蘑菇生长间, 规格为 40cmx80cmx70cm, 上部有两盏荧光 灯及一盏紫外线消毒灯(避免菌类传播), 还设置自动加湿装置; 此空间共 分三层蘑菇培养层, 可月产鲜蘑菇 3-5斤。 在保证蘑菇生长对湿度的要求 的同时, 还可避免菌类传播。  The dark room 2 is divided into a nursery room and a mushroom growing room, and a hydroponic cultivation device and a artificial light supplementing system are respectively provided. A human-computer interaction interface is arranged on the upper part of the darkroom door. The size of the nursery room is 40cmx50cmx70cm, and there are 3 new family-specific LED plant fill light boards (15W per watt, 48V power supply), and about 70 seedlings. Mushroom growth room, the specification is 40cmx80cmx70cm, there are two fluorescent lamps on the upper part and one ultraviolet disinfection lamp (to avoid the spread of fungi), and an automatic humidification device is also provided; this space is divided into three layers of mushroom culture layer, which can produce fresh mushrooms 3-5 per month. jin. While ensuring the humidity requirements of mushroom growth, it also avoids the spread of fungi.

叶菜类生长间、 育苗间和蘑菇生长间分别具有不同的温度控制系统, 每个种植空间都可按不同植物的需要实现分温区控制。  There are different temperature control systems for leafy growth, nursery and mushroom growth, and each planting space can be controlled by different plants according to the needs of different plants.

叶菜类生长间、 育苗间和蘑菇生长间分别设置独立的新风系统, 即设 置两个 15瓦的小型风扇, 用 PLC控制, 安装方式一正一反, 根据二氧化 碳传感器的采集数据, 控制风扇的工作时间, 来控制二氧化碳浓度。 每个 生长空间都有独立的新风系统,可实现生长间内的气体与室内气体的置换, 在生活空间内形成一个天然氧吧。  An independent fresh air system is set up between the leafy growth room, the nursery room and the mushroom growth room, that is, two 15 watt small fans are set up, controlled by PLC, and the installation method is positive and negative. According to the data collected by the carbon dioxide sensor, the fan is controlled. Working time to control the concentration of carbon dioxide. Each growth space has an independent fresh air system that can replace the gas in the growth chamber with the indoor gas, forming a natural oxygen bar in the living space.

拒体的底层内安装空调系统、 营养液箱和水泵, 具有可向外拉的门, 可以随时检查空调系统及营养液箱状况及水泵运转情况。 空调系统包括风 机和压缩机组。  An air conditioning system, a nutrient tank and a water pump are installed in the bottom layer of the rejecting body, and the door can be pulled outwards, and the condition of the air conditioning system and the nutrient tank and the operation of the pump can be checked at any time. The air conditioning system consists of a wind turbine and a compressor unit.

拒体的背面设有夹层, 夹层内设置供液管和回液管, 夹层背部设有出 气孔,夹层厚度为 10cm。拒体最底部设有四个自由滑动的轮子,移动方便。  The back side of the body is provided with a sandwich layer, and the liquid supply pipe and the liquid return pipe are arranged in the interlayer, and the back of the interlayer is provided with an air outlet, and the thickness of the interlayer is 10 cm. There are four free-sliding wheels at the bottom of the body, making it easy to move.

明室 1和暗室 2的每层栽培空间内均设置水耕栽培装置和营养液供、 回液管道。 水耕栽培装置包括水耕栽培槽和定植盖板 5 , 水耕栽培槽通过 供液管和回液管与营养液箱相连接, 实现营养液的自动供应。 水耕栽培槽 深 10cm, 分别设有供液孔、 回液孔及液位显示孔。 每层水耕栽培槽在后侧 设有孔径为 3cm的供液孔和回液孔, 供液孔直接与供液管连接, 回液孔直 接与回液管相连, 从而实现营养液的供给与排放。 此外, 水耕栽培槽底部 一侧, 设有排液孔, 孔径为 6cm, 在植物栽培过程中, 排液孔用塞子堵住, 为进行栽培槽营养液的更换与栽培槽的清洗, 打开塞子, 可实现液体强行 排放。 定植盖板 5上设有定植孔, 定植孔的直径为 2.5cm, 间距为 10cm, 可将植物直接定植在定植孔内。 水耕栽培槽和定植盖板 5材料为不锈钢或 PVC材料, 材料为高密度泡沫材料。 LED植物补光灯板和水耕栽培装置均 可进行抽屉式的安装和拆卸, 可方便清洗及将几层栽培空间改装成为一个 大的果菜类的生长空间, 操作筒单。 A hydroponic cultivation device and a nutrient supply and return pipe are provided in each cultivation space of the bright room 1 and the dark room 2. The hydroponic cultivation device comprises a hydroponic cultivation tank and a planting cover plate 5, and the hydroponic cultivation tank is connected with the nutrient liquid tank through the liquid supply pipe and the liquid return pipe to realize automatic supply of the nutrient solution. The hydroponic cultivation tank is 10 cm deep, and is provided with a liquid supply hole, a liquid return hole and a liquid level display hole, respectively. Each layer of hydroponic cultivation trough is on the back side The liquid supply hole and the liquid return hole having a hole diameter of 3 cm are provided, and the liquid supply hole is directly connected with the liquid supply pipe, and the liquid return hole is directly connected with the liquid return pipe, thereby realizing the supply and discharge of the nutrient solution. In addition, on the bottom side of the hydroponic cultivation tank, there is a drainage hole with a pore diameter of 6 cm. During the cultivation of the plant, the drainage hole is blocked with a plug, and the nutrient solution is replaced and the cultivation tank is cleaned, and the stopper is opened. , can achieve liquid discharge. The planting cover 5 is provided with a fixing hole. The diameter of the planting hole is 2.5 cm and the spacing is 10 cm, and the plant can be directly planted in the planting hole. The hydroponic cultivation tank and the planting cover 5 are made of stainless steel or PVC material, and the material is a high-density foam material. The LED plant fill light board and the hydroponic cultivation device can be installed and disassembled in a drawer type, which can be easily cleaned and converted into several large cultivation space for the growth space of the fruit and vegetable.

智能型家庭植物生产系统的营养液自动循环系统包括水耕栽培装置、 营养液箱、 水泵、 供液管、 回液管、 检测器、 PLC、 自动配液系统和营养 液强排管线等, 可实现营养液的自动循环供液、 营养液自动配制及液位自 动调控等功能。 营养液箱位于智能型家庭植物生产系统最下层, 水泵置于 营养液箱内, 供液管和回液管并排纵向布置于栽培室夹层一侧。 供液管底 端与水泵连接, 另一端与每层栽培室水耕栽培槽上的供液孔连接, 营养液 通过供液管直接流通到植物栽培室水耕栽培槽内, 实现植物营养的供给。 回液管一端与每层栽培室水耕栽培槽上的回液孔连通, 底端与营养液箱相 连, 液位超过一定高度时, 多余营养液通过回液管直接流回营养液箱, 从 而实现营养液自动回液、 循环。 每根供液管上安有供液阀门, 可以对供液 流速进行调节。 供液管和回液管采用 UP VC管。 自动配液系统通过管线与 营养液箱相连, 自动配液系统包括配液箱和计量泵, 配液箱通过管线与计 量泵相连, 剂量泵通过管线与营养液箱相连, 营养液可以实现自动配制。 配液箱分别装有 A液、 B液、 C液, 每个配液箱与计量泵相连, 剂量泵通 过管线直接与营养液箱相连, 根据系统设定的营养液配制比例, 剂量泵将 每种组分溶液直接流入营养液箱, 实现营养液自动配制。 该系统设置有营 养液强排管线, 与供液管相连, 其上安装强排阀门。 可实现营养液的强行 排放。 当营养液需要更换时, 开启强排阀门, 实现营养液强行排放。 营养 液箱设有最高液位与最低液位, 当营养液液位高于最高液位时, 系统将对 营养液进行强行排放, 当液位低于最低液位时, 系统将进行营养液的自动 补给。 此外, 该系统还设置搅拌管线, 搅拌管线一端连接在靠近营养液箱 的供液管上, 另一端与营养液箱相连, 搅拌管线上安装搅拌阀门。 开通搅 拌阀门, 可对配制的营养液进行搅拌, 使各种养分配制均匀。 该系统还设 置给水管线, 给水管线与营养液箱相连, 其上安装给水阀门。 给水管线设 置在营养液箱一端, 通过控制给水阀门, 可以直接将水流入营养液内, 实 现对高浓度营养液的稀释。 检测器可实时监测箱体内营养液的 pH、 EC、 溶氧、 液位等各项指标, 并将各种监测数据传送到 PLC, 通过 PLC对自动 配液系统进行控制, 实现各项参数的调节, 保证各项参数适应蔬菜生长发 育需求。 The nutrient solution automatic circulation system of the intelligent family plant production system includes a hydroponic cultivation device, a nutrient solution tank, a water pump, a liquid supply pipe, a liquid return pipe, a detector, a PLC, an automatic dosing system, and a nutrient liquid strong drainage line, etc. It realizes automatic circulation of nutrient solution, automatic preparation of nutrient solution and automatic control of liquid level. The nutrient tank is located at the lowermost level of the intelligent home plant production system. The water pump is placed in the nutrient tank, and the liquid supply pipe and the liquid return pipe are arranged side by side in the longitudinal direction of the cultivation chamber. The bottom end of the liquid supply pipe is connected with the water pump, and the other end is connected with the liquid supply hole on the hydroponic cultivation tank of each cultivation room, and the nutrient solution is directly circulated through the liquid supply pipe to the hydroponic cultivation tank of the plant cultivation room to realize the supply of plant nutrition. . One end of the liquid return pipe is connected with the liquid return hole on the hydroponic cultivation tank of each cultivation room, and the bottom end is connected with the nutrient liquid tank. When the liquid level exceeds a certain height, the excess nutrient solution flows directly back to the nutrient liquid tank through the liquid return pipe, thereby Realize automatic liquid return and circulation of nutrient solution. A supply valve is provided on each of the supply pipes to adjust the flow rate of the supply. The supply pipe and the return pipe are UP VC pipes. The automatic dosing system is connected to the nutrient tank through a pipeline. The automatic dosing system includes a dosing tank and a metering pump. The dosing tank is connected to the metering pump through a pipeline. The dosing pump is connected to the nutrient tank through a pipeline, and the nutrient solution can be automatically prepared. . The liquid distribution tank is respectively equipped with liquid A, liquid B and liquid C. Each liquid distribution tank is connected to the metering pump. The dose pump is directly connected to the nutrient liquid tank through the pipeline. According to the proportion of the nutrient solution set by the system, the dose pump will be The component solution flows directly into the nutrient solution tank to realize automatic preparation of the nutrient solution. The system is provided with a strong drainage line for nutrient solution, connected to the supply pipe, and a strong discharge valve is installed thereon. Forced discharge of nutrient solution can be achieved. When the nutrient solution needs to be replaced, the strong discharge valve is opened to achieve the forced discharge of the nutrient solution. The nutrient tank has the highest liquid level and the lowest liquid level. When the nutrient liquid level is higher than the highest liquid level, the system will forcibly discharge the nutrient solution. When the liquid level is lower than the minimum liquid level, the system will carry out the nutrient solution. Automatic Supply. In addition, the system is also provided with a stirring line, one end of which is connected to the liquid supply pipe near the nutrient liquid tank, the other end is connected to the nutrient liquid tank, and a stirring valve is installed on the stirring line. The mixing valve is opened, and the prepared nutrient solution can be stirred to make the various nutrient distribution systems uniform. The system is also provided with a water supply line, and the feed water line is connected to the nutrient tank, and a water supply valve is installed thereon. The water supply pipeline is arranged at one end of the nutrient solution tank. By controlling the water supply valve, water can be directly flowed into the nutrient solution to achieve dilution of the high concentration nutrient solution. The detector can monitor the pH, EC, dissolved oxygen, liquid level and other indicators of the nutrient solution in the tank in real time, and transfer various monitoring data to the PLC, and control the automatic dosing system through PLC to realize the adjustment of various parameters. Ensure that the parameters are adapted to the growth and development needs of vegetables.

人工补光系统包括 LED植物光源板、 光照检测器和 PLC, LED植物 光源板由光源板本体和控制器组成, 光源板本体和控制器通过通信接口相 连接, 光源板本体设有若干个红光 LED、 蓝光 LED和绿光 LED, 植物光 源板安装在智能型家庭植物生产系统每层栽培室的顶部。 光照检测器置于 栽培室内,根据植物光照需求特性通过智能控制系统设定合适光强、光质、 光周期等参数。 光照检测器可以收集在为植物补光过程中, 光源的光照强 度、 光照频率、 光照周期等信息, 并将这些信息传输到智能型家庭植物生 产系统顶部的 PLC内, 当光照信息参数不符合植物生长特性设定的最佳光 照参数实时, PLC对光源各项指标进行调控, 使各项光照指标适合植物生 长发育要求。  The artificial light filling system comprises an LED plant light source board, a light detector and a PLC, and the LED plant light source board is composed of a light source board body and a controller, the light source board body and the controller are connected by a communication interface, and the light source board body is provided with a plurality of red light LED, blue LED and green LED, plant light source panels are installed on top of each floor of the intelligent home plant production system. The light detector is placed in the cultivation room, and the appropriate light intensity, light quality, photoperiod and other parameters are set by the intelligent control system according to the characteristics of the plant illumination demand. The light detector collects information such as the light intensity, illumination frequency, and illumination period of the light source during the process of filling the plant, and transmits the information to the PLC at the top of the intelligent home plant production system. When the light information parameters do not match the plant The optimal illumination parameters set by the growth characteristics are real-time, and the PLC regulates various indicators of the light source, so that various light indicators are suitable for plant growth and development requirements.

人工补光系统还设置灯板散热系统, 包括两个 15瓦的小型风扇,安装 方式一正一反,用 PLC控制,根据固定化的时间程序,来控制风扇的起停, 来达到灯板散热功能。 LED植物光源板的红光 LED的波长为 660nm, 最 大发光强度为 220 μιηο1·ιη-2·δ-1; 蓝光 LED的波长为 450nm, 最大发光强 度为 43 μιηο1·ιη-2·δ-1 ; 绿光 LED 的波长为 550nm, 最大发光强度为 17 mol.m-2.s-l。 光源板本体上设有温度传感器。 光源板本体上还设有若干 扇, 对光源板本体进行降温处理。 红光 LED、 蓝光 LED和绿光 LED相互 间隔排列, 红光 LED、 蓝光 LED和绿光 LED的数量比例为 8: 1: 1。  The artificial fill light system also sets the light board cooling system, including two 15 watt small fans. The installation method is positive and negative. It is controlled by PLC. According to the fixed time program, the fan starts and stops to achieve the heat dissipation of the light board. Features. The red LED of the LED plant light source plate has a wavelength of 660 nm, the maximum luminous intensity is 220 μιηο1·ιη-2·δ-1; the wavelength of the blue LED is 450 nm, and the maximum luminous intensity is 43 μιηο1·ιη-2·δ-1; The green LED has a wavelength of 550 nm and a maximum luminous intensity of 17 mol.m-2.sl. A temperature sensor is disposed on the body of the light source board. The light source plate body is further provided with a plurality of fans, and the light source plate body is cooled. The red, blue, and green LEDs are spaced apart from each other, and the ratio of red, blue, and green LEDs is 8: 1: 1.

智能型家庭植物生产系统的智能控制系统包括传感器、 PLC (可编程 逻辑控制器)、人机交互界面和执行机构, 传感器、人机交互界面和执行机 构, 分别与 PLC相连。 传感器包括 pH传感器、 EC (电导率)传感器、 液 位传感器、 湿度传感器、 温度传感器、 二氧化碳传感器、 光照传感器等。 人机交互界面为 HMI (人机界面)显示屏。 执行机构包括补光装置、 供回 液和给排水装置及环境控制装置等。 智能控制系统可对智能型家庭植物生 产系统内各类环境因子进行智能控制。 各项环境因子的传感器可对智能型 家庭植物生产系统内的 pH、 EC、 液位、 湿度、 温度、 二氧化碳、 光照等 进行实时监测, 采集的数据转换成 PLC读取的模拟信号, 再实时地显示到 人机交互界面上。 HMI显示屏为触摸屏, 在触摸屏上显示实时数据及历史 数据。 可在触摸屏上设定适宜植物生长发育的系统参数, PLC根据设定的 系统参数对采集的数据进行合理处理, 对补光装置、 供回液和给排水装置 及环境控制装置等进行调整和控制, 使各项环境参数达到植物生长发育要 求, 实现系统灵活可调整性。 此外, 控制系统还包括摄像头和监控器, 摄 像头通过网络与监控器相连。 在智能型家庭植物生产系统每层栽培室的顶 角安装一台 360度摄像探头, 拍摄的图像通过网络传输到 PC机上, 可以 实现远程图像传输, 通过远端 PC机实时监控智能型家庭植物生产系统内 的蔬菜生长情况, 实时地掌握植物的生长进度。 Intelligent control system for intelligent home plant production systems including sensors, PLCs (programmable The logic controller), the human-machine interface and the actuator, the sensor, the human-machine interface and the actuator are respectively connected to the PLC. The sensor includes a pH sensor, an EC (conductivity) sensor, a level sensor, a humidity sensor, a temperature sensor, a carbon dioxide sensor, a light sensor, and the like. The human-machine interface is an HMI (Human Machine Interface) display. Actuators include light-filling devices, supply and return water and water supply and drainage devices, and environmental control devices. The intelligent control system intelligently controls various environmental factors in the intelligent home plant production system. The sensors of various environmental factors can monitor the pH, EC, liquid level, humidity, temperature, carbon dioxide, illumination, etc. in the intelligent home plant production system in real time, and the collected data is converted into analog signals read by PLC, and then in real time. Displayed to the human-computer interface. The HMI display is a touch screen that displays real-time data and historical data on the touch screen. The system parameters suitable for plant growth and development can be set on the touch screen, and the PLC can properly process the collected data according to the set system parameters, and adjust and control the light filling device, the supply and return liquid, the water supply and drainage device and the environmental control device. , to make various environmental parameters meet the requirements of plant growth and development, to achieve system flexibility and adjustability. In addition, the control system includes a camera and a monitor, and the camera is connected to the monitor via a network. A 360-degree camera probe is installed at the top corner of each cultivation room of the intelligent home plant production system. The captured images are transmitted to the PC via the network, enabling remote image transmission and real-time monitoring of intelligent home plant production through remote PCs. The growth of vegetables in the system, in real time, grasp the growth progress of the plants.

本智能型家庭植物生产系统使用流程筒单、 方便, 包括:  The smart home plant production system uses a single and convenient process, including:

第一步: 把每个种植槽内加满营养液水, 并把水箱加满后, 再启动供 回液系统;  The first step: fill each planting tank with nutrient solution water, and after filling the water tank, start the liquid supply and return system;

第二步: 实施种植工作;  Step 2: Implement planting work;

第三步: 开启总控制系统, 选择种植类型后即可。  Step 3: Open the total control system and select the planting type.

Claims

权 利 要 求 Rights request 1、 一种智能型家庭植物生产系统, 包括拒体, 拒体内设置水耕栽培及 营养液自动循环系统、 空调系统、 人工补光系统和智能控制系统, 其特征 在于: 所述的拒体包括明室、 暗室、 底层和背部夹层, 所述的人工补光系 统采用由红光 LED、蓝光 LED和绿光 LED构成的 LED植物光源板进行人 工补光。  1. An intelligent family plant production system, comprising a body rejecting body, refusing to set up a hydroponic cultivation and nutrient solution automatic circulation system, an air conditioning system, a artificial light supplementing system and an intelligent control system, wherein: the reject body comprises The bright room, the dark room, the bottom layer and the back interlayer, the artificial light-filling system adopts an LED plant light source plate composed of a red LED, a blue LED and a green LED to artificially fill light. 2、根据权利要求 1所述的智能型家庭植物生产系统, 其特征在于: 所 述明室为叶菜类生长间, 分为三层栽培空间; 所述的暗室分为育苗间和蘑 菇生长间, 蘑菇生长间分为三层。  The intelligent home plant production system according to claim 1, wherein: the bright room is a leafy growth room, and is divided into three layers of cultivation space; the dark room is divided into a nursery room and a mushroom growth room. The mushroom growth is divided into three layers. 3、根据权利要求 2所述的智能型家庭植物生产系统, 其特征在于: 所 述的蘑菇生长间还设置紫外线消毒灯和自动加湿装置。  The intelligent home plant production system according to claim 2, characterized in that: the mushroom growing chamber is further provided with an ultraviolet disinfecting lamp and an automatic humidifying device. 4、根据权利要求 3所述的智能型家庭植物生产系统, 其特征在于: 所 述的叶菜类生长间、 育苗间和蘑菇生长间分别具有不同的温度控制系统和 独立的新风系统,新风系统包括两个 15瓦的小型风扇,安装方式一正一反, 用 PLC控制。  4. The intelligent home plant production system according to claim 3, wherein: the leafy growth room, the nursery room and the mushroom growth room respectively have different temperature control systems and independent fresh air systems, fresh air systems. It includes two small fans of 15 watts. The installation method is one positive and one reverse, and it is controlled by PLC. 5、根据权利要求 1所述的智能型家庭植物生产系统, 其特征在于: 所 述拒体的底层内安装空调系统、 营养液箱和水泵, 具有可向外拉的门; 所 述拒体的背面设有夹层, 夹层内设置供液管和回液管, 夹层背部设有出气 孔, 夹层厚度为 10cm。  The intelligent home plant production system according to claim 1, wherein: the air-conditioning system, the nutrient solution tank and the water pump are installed in the bottom layer of the body, and the door can be pulled outward; There is a sandwich on the back side, a liquid supply pipe and a liquid return pipe are arranged in the interlayer, and an air outlet hole is arranged on the back of the interlayer, and the thickness of the interlayer is 10 cm. 6、根据权利要求 1所述的智能型家庭植物生产系统, 其特征在于: 所 述的水耕栽培及营养液自动循环系统包括水耕栽培槽、 定植盖板、 营养液 箱、 水泵、 供液管、 回液管、 检测器、 PLC、 自动配液系统和营养液强排 管线,所述的水耕栽培槽分别设有供液孔和回液孔,在底面上设有排液孔, 所述定植盖板上设有定植孔,放置在水耕栽培槽上, 水泵置于营养液箱内, 供液管底端与水泵连接, 营养液通过供液管流入水耕栽培槽中, 再通过回 液管流回营养液箱, 自动配液系统通过管线与营养液箱相连, 强排管线与 供液管相连, 其上安装强排阀门。  The intelligent home plant production system according to claim 1, wherein: the hydroponic cultivation and nutrient solution automatic circulation system comprises a hydroponic cultivation tank, a planting cover, a nutrient solution tank, a water pump, and a liquid supply. a pipe, a liquid return pipe, a detector, a PLC, an automatic liquid mixing system, and a nutrient liquid strong drainage line, wherein the hydroponic cultivation tank is provided with a liquid supply hole and a liquid return hole, respectively, and a liquid discharge hole is arranged on the bottom surface. The planting cover plate is provided with a planting hole, placed on the hydroponic cultivation tank, the water pump is placed in the nutrient liquid tank, the bottom end of the liquid supply pipe is connected with the water pump, and the nutrient solution flows into the hydroponic cultivation tank through the liquid supply pipe, and then passes through The liquid return pipe flows back to the nutrient liquid tank, and the automatic liquid mixing system is connected to the nutrient liquid tank through a pipeline, and the strong discharge pipeline is connected with the liquid supply pipe, and a strong discharge valve is installed thereon. 7、根据权利要求 1所述的智能型家庭植物生产系统, 其特征在于: 所 述的人工补光系统包括 LED植物光源板、光照检测器和 PLC,所述的 LED 植物光源板由光源板本体和控制器组成, 光源板本体和控制器通过通信接 口相连接, 光源板本体设有若干个红光 LED、 蓝光 LED和绿光 LED。 7. The intelligent home plant production system according to claim 1, wherein: said artificial light supplementing system comprises an LED plant light source panel, a light detector and a PLC, said LED The plant light source panel is composed of a light source panel body and a controller, and the light source panel body and the controller are connected by a communication interface, and the light source panel body is provided with a plurality of red LEDs, blue LEDs and green LEDs. 8、根据权利要求 7所述的智能型家庭植物生产系统, 其特征在于: 所 述的人工补光系统还设置灯板散热系统, 包括两个 15瓦的小型风扇,安装 方式一正一反, 用 PLC控制。  The intelligent home plant production system according to claim 7, wherein: the artificial light-filling system further comprises a light-board heat dissipation system, comprising two small fans of 15 watts, and the installation method is positive and negative. Controlled by PLC. 9、根据权利要求 8所述的智能型家庭植物生产系统, 其特征在于: 所 述的 LED植物光源板的红光 LED的波长为 660±20nm, 最大发光强度为 220 μιηο1·ιη-2·δ-1 ; 蓝光 LED 的波长为 450±20nm, 最大发光强度为 43 μιηο1·ιη-2·δ-1; 绿光 LED 的波长为 550±20nm , 最大发光强度为 17 mol'm-2's-l。  9. The intelligent home plant production system according to claim 8, wherein: the red LED of the LED plant light source panel has a wavelength of 660±20 nm, and the maximum luminous intensity is 220 μιηο1·ιη-2·δ. -1 ; The wavelength of the blue LED is 450±20nm, the maximum luminous intensity is 43 μιηο1·ιη-2·δ-1; the wavelength of the green LED is 550±20 nm, and the maximum luminous intensity is 17 mol'm-2's-l. 10、 根据权利要求 9所述的智能型家庭植物生产系统, 其特征在于: 所述的 LED植物光源板和水耕栽培装置均采用抽拉结构安装在拒体上。  10. The intelligent home plant production system according to claim 9, wherein: the LED plant light source panel and the hydroponic cultivation device are both mounted on the reject body by using a pulling structure.
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