CN205899417U - Farmland information acquisition monitoring system based on microprocessor STM32 - Google Patents

Farmland information acquisition monitoring system based on microprocessor STM32 Download PDF

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Publication number
CN205899417U
CN205899417U CN201620793990.3U CN201620793990U CN205899417U CN 205899417 U CN205899417 U CN 205899417U CN 201620793990 U CN201620793990 U CN 201620793990U CN 205899417 U CN205899417 U CN 205899417U
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China
Prior art keywords
gprs
circuit
sensor
information acquisition
monitoring system
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Expired - Fee Related
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CN201620793990.3U
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Chinese (zh)
Inventor
王丹萍
刘洋
刘英英
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Shenyang University
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Shenyang University
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Abstract

Farmland information acquisition monitoring system based on microprocessor STM32 relates to farmland information acquisition monitoring system, monitoring system includes temperature sensor, humidity transducer, photosensitive sensor, moisture sensor, pH value sensor, GPRS antenna, host computer, the host computer has 1 rectangular shell, and the GPRS antennal interface is located the GPRS antenna groove of host computer shell top, accuse circuit board comprises microprocessor circuit, 485 communication circuit, GPRS communication circuit, 485 communication circuit comprises 485 driver chip MAX485 and peripheral circuit, links to each other with temperature sensor, humidity transducer, photosensitive sensor, moisture sensor, pH value sensor, air velocity transducer through 485 buses. The farming information acquisition GPRS communication circuit comprise GPRS communication module SIM908 module and peripheral circuit. This farmland information acquisition monitoring system has realized all -weather real -time online farmland information acquisition monitoring, guides the agricultural production and improves agriculture production efficiency.

Description

Field information acquisition monitoring system based on microprocessor stm32
Technical field
This utility model is related to agriculture production environment monitoring system, specially a kind of farmland based on microprocessor stm32 Information gathering monitoring system.
Background technology
Agricultural is the basis of human survival and development, is mainstay of the national economy industry, is in the weight concern national economy Weight.Field information acquisition is the research base station of agricultural modernization and Digital Agriculture.It is to the effect that to farmland geography ring The information such as border, Soil structure, climate parameter and crop growth situation, realize dynamic, accurate and real-time monitoring.
Mainly divide two kinds to the acquisition method of agricultural environment information at present: one kind is that staff enters pedestrian to collection in worksite Work record, work is heavy, and cannot realize data and transmit in real time;Another kind of method is the collection system based on bus-type for the small range System, this kind of method is not only expensive, and in farm environment humidity high, acid big, illumination is strong etc., and feature can lead to cable Aging, reduce the reliability of system, make troubles to agricultural production.These methods all far can not meet modern agricultural production Need.
Content of the invention
The purpose of this utility model is to provide a kind of field information acquisition monitoring system based on microprocessor stm32, With stm32f103 microprocessor and μ c/os-ii operating system as platform, complicated process task is handed over operating system to be adjusted Degree, makes the utilization rate of cpu be improved, and program is easier design and safeguards.This field information acquisition monitoring system by using Temperature sensor, humidity sensor, light sensor, moisture transducer, ph value sensor, air velocity transducer, gprs communication mould Block, field information acquisition is monitored, wireless communication technology combines it is achieved that the field information acquisition of round-the-clock real-time online is supervised Survey.Guiding agricultural production is come with this and improves agricultural production efficiency.
The technical solution of the utility model: a kind of field information acquisition monitoring system based on microprocessor stm32, including Temperature sensor, humidity sensor, light sensor, moisture transducer, ph value sensor, gprs antenna, main frame.Main frame has 1 Individual rectangular shell, is provided with 1 main frame groove, 1 gprs days line groove above host housing.Host housing built with 1 piece of main control board, this main control board is made up of microcontroller circuit, 485 telecommunication circuits, gprs telecommunication circuit.This master control Microcontroller circuit on circuit board is made up of stm32f103 and its peripheral circuit, the parsing of responsible sensing data agreement and The control of whole system.485 telecommunication circuits on this main control board are provided with 1 485 bus communication interface, total by 485 Line is connected with temperature sensor, humidity sensor, light sensor, moisture transducer, ph value sensor, air velocity transducer, should 485 bus communication interface are located at the main frame groove above host housing.Set in gprs telecommunication circuit on this main control board There is 1 gprs antennal interface, be connected with gprs antenna by gprs high-frequency line, this gprs antennal interface is located above host housing Gprs antenna groove.
Main control board is made up of microcontroller circuit, 485 telecommunication circuits, gprs telecommunication circuit.Microcontroller circuit by Stm32f103 and its peripheral circuit composition, the parsing of responsible sensing data agreement and the control of whole system.485 communication electricity It route 485 driving chip max485 and its peripheral circuit to constitute, by 485 buses and temperature sensor, humidity sensor, photosensitive Sensor, moisture transducer, ph value sensor, air velocity transducer are connected, and the miniclimate data carrying out farmland (includes temperature, wet Degree, soil etc.) monitored in real time, thus solving the requirement of field information acquisition autgmentability, distributivity, real-time.
Field information acquisition.Gprs telecommunication circuit is made up of gprs communication module sim908 module and its peripheral circuit, should Module will be responsible for positional information and gprs radio communication at acquisition abnormity agricultural land information.
Field information acquisition monitoring system passes through 485 buses and temperature sensor, humidity sensor, light sensor, water Sub-sensor, ph value sensor, air velocity transducer are connected, and carry out soil moisture, ph value, precipitation, aerial temperature and humidity, illumination strong Degree, meteorological information acquisition.Temperature sensor selects ds18b20 module, is responsible for temperature at collection farmland surface;Humidity sensor Select sht10 module, be responsible for collection farmland air humidity;Light sensor selects to use photosensitive diode (led) module, is responsible for collection agriculture Field intensity of illumination;Moisture transducer selects rhd-100 soil moisture sensor module, is responsible for moisture in collection agricultural land soil Information;Ph value sensor selects hd3405ph module, is responsible for collection agricultural land soil ph Value Data;Air velocity transducer selects lv electronics Formula compass module, is responsible for collection farmland wind speed information;Communication module selects sim908 module, and this module is responsible for acquisition abnormity farmland Positional information at information and gprs radio communication.When abnormal agricultural land information occurs, by gprs module by farmland at this Monitoring information is sent to Surveillance center it is achieved that round-the-clock monitor to farmland in real time, is agricultural management and decision-making section is provided with The foundation of effect.
Brief description
Fig. 1 is this utility model system wiring diagram;
Fig. 2 is this utility model main machine structure schematic diagram;
Fig. 3 is this utility model host circuit schematic diagram.
In figure adnexa:
1 is temperature sensor, 2 is humidity sensor, 3 is light sensor, 4 is gprs antenna, 5 is 485 buses, 6 are Gprs high-frequency line, 7 be main frame, 8 be moisture transducer, 9 be ph value sensor, 10 be air velocity transducer, 11 be main frame groove, 12 For gprs days line grooves.
Specific embodiment
Embodiment
See Fig. 1, Fig. 2, a kind of field information acquisition monitoring system based on microprocessor stm32, including temperature sensor 1st, humidity sensor 2, light sensor 3, moisture transducer 8, ph value sensor 9, air velocity transducer 10, gprs antenna 6, main frame 7.Main frame 7 has 1 rectangular shell, is provided with 11,1 gprs days line groove 12 of 1 main frame groove above main frame 7 shell. In host housing built with 1 piece of main control board, this main control board is by microcontroller circuit, 485 telecommunication circuits, gprs communication Circuit forms.485 telecommunication circuits on main control board are provided with 1 485 bus communication interface, by 485 buses 5 and temperature Sensor 1, humidity sensor 2, light sensor 3, moisture transducer 8, ph value sensor 9, air velocity transducer 10 are connected, should 485 bus communication interface are located at the main frame groove 11 above main frame 7 shell.Set in gprs telecommunication circuit on main control board There is 1 gprs antennal interface, be connected with gprs antenna 4 by gprs high-frequency line 6, this gprs antennal interface is located at main frame 7 shell At the gprs days line grooves 12 of top.
See Fig. 3, main control board is made up of microcontroller circuit, 485 telecommunication circuits, gprs telecommunication circuit.Microprocessor Circuit is made up of stm32f103 and its peripheral circuit, the parsing of responsible sensing data agreement and the control of whole system.485 Telecommunication circuit is made up of 485 driving chip max485 and its peripheral circuit, is connected with sensor by 485 buses.Gprs communicates Circuit is made up of gprs communication module sim908 module and its peripheral circuit, is responsible for the positional information at the abnormal information of collection farmland With gprs radio communication.

Claims (5)

1. the field information acquisition monitoring system based on microprocessor stm32 is it is characterised in that described monitoring system includes temperature Sensor, humidity sensor, light sensor, moisture transducer, ph value sensor, gprs antenna, main frame;Main frame have 1 long Square shell, is provided with 1 main frame groove, 1 gprs days line groove above host housing;Host housing is built with 1 piece of master Control circuit board, the microcontroller circuit on main control board is made up of stm32f103 and its peripheral circuit, on main control board 485 telecommunication circuits are provided with 1 485 bus communication interface, by 485 buses and temperature sensor, humidity sensor, photosensitive biography Sensor, moisture transducer, ph value sensor, air velocity transducer are connected, and the gprs telecommunication circuit on main control board is provided with 1 Gprs antennal interface, is connected with gprs antenna by gprs high-frequency line, and gprs antennal interface is located at the gprs above host housing Antenna groove;Control circuit board is made up of microcontroller circuit, 485 telecommunication circuits, gprs telecommunication circuit;485 telecommunication circuits by 485 driving chip max485 and its peripheral circuit are constituted, by 485 buses and temperature sensor, humidity sensor, light sensor Device, moisture transducer, ph value sensor, air velocity transducer are connected;
Agriculture information gathering gprs telecommunication circuit is made up of gprs communication module sim908 module and its peripheral circuit.
2. the field information acquisition monitoring system based on microprocessor stm32 according to claim 1 it is characterised in that Described 485 bus communication interface are located at the main frame groove above host housing.
3. the field information acquisition monitoring system based on microprocessor stm32 according to claim 1 it is characterised in that Described main control board is made up of microcontroller circuit, 485 telecommunication circuits, gprs telecommunication circuit.
4. the field information acquisition monitoring system based on microprocessor stm32 according to claim 1 it is characterised in that Described processor circuit is made up of stm32f103 and its peripheral circuit.
5. the field information acquisition monitoring system based on microprocessor stm32 according to claim 1 it is characterised in that Described module will be responsible for positional information and gprs radio communication at acquisition abnormity agricultural land information.
CN201620793990.3U 2016-07-27 2016-07-27 Farmland information acquisition monitoring system based on microprocessor STM32 Expired - Fee Related CN205899417U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620793990.3U CN205899417U (en) 2016-07-27 2016-07-27 Farmland information acquisition monitoring system based on microprocessor STM32

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620793990.3U CN205899417U (en) 2016-07-27 2016-07-27 Farmland information acquisition monitoring system based on microprocessor STM32

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CN205899417U true CN205899417U (en) 2017-01-18

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107664617A (en) * 2017-10-25 2018-02-06 沈阳大学 A kind of sludge concentration monitoring device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107664617A (en) * 2017-10-25 2018-02-06 沈阳大学 A kind of sludge concentration monitoring device

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170118

Termination date: 20170727