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1. Brief Introduction of Sheath Blight Detector
The sheath blight monitoring instrument is also called the rice sheath blight monitoring instrument. The sheath blight monitoring instrument is a new type of sheath blight monitoring equipment integrating meteorological monitoring and intelligent spore capture microscopic imaging. The system collects the growth environment of rice planting areas , and predict the incidence of rice sheath blight according to the system built-in model. Sheath blight damages rice leaves and leaf sheaths, which is a serious hazard to rice production. The built-in sheath blight spore capture device of the sheath blight monitor also provides an unmanned and visual means of verification for the occurrence of sheath blight by collecting the spore stock of sheath blight and its diffusion dynamics. The equipment is mainly composed of meteorological information acquisition device, spore capture device, spore carrying device, image acquisition device, network transmission module, power supply and lightning protection system. Realize remote and automatic capture of sheath blight spore information, automatic rotation of the glass carrier, automatic collection, automatic microscopic imaging and photography, automatic upload of image data, automatic operation and other functions. At the same time, environmental meteorological information and pictures of sheath blight disease are uploaded to the designated network platform in real time to form a dynamic comparison database of meteorological environment information and spore occurrence status, providing a large amount of data support for the study of the relationship between sheath blight occurrence trends and weather. Provide services for modern agriculture, meet the needs of disease prediction and specimen collection, and prevent and control diseases in a timely manner.
2. Performance characteristics of the sheath blight detection and forecasting instrument
1. Stainless steel plastic-sprayed casing, 15-inch ultra-large high-definition capacitive touch screen, windows operating system, and a good human-computer interaction interface.
2. With a thousand times magnification microscopic imaging system with 12 million pixels, it can automatically take high-definition microscopic photography of the captured germ spores, and the clarity of the captured images can meet the requirements of manual identification of the species of germ spores.
3. The equipment automatically captures germ spores 24 hours a day, automatically takes pictures of the captured germ spores, and automatically selects the optimal picture for upload.
4. The fully intelligent automatic microscopic imaging system can automatically adjust the shooting angle of the camera to realize all-round and no dead angle imaging of the glass slide.
5. It can realize the automatic operation of the whole process from loading of glass slides, capture of germ spores, microscopic imaging, and recovery of glass slides.
6. Equipped with ultra-long special glass carrier tape, which can meet the consumption of 600 days.
7. With a variety of working modes, automatic operation mode, timing operation mode, and debugging operation mode can be switched freely.
8. With built-in Beidou/GPS positioning function, device information can be uploaded to the platform in real time, and current device parameters can be viewed on the map.
9. It can monitor multiple sheath blight monitoring indicators such as air temperature and humidity, atmospheric pressure, wind speed, wind direction, and rainfall in real time, and predict the incidence of sheath blight through the sheath blight model inside the system.
10. The actions of the equipment can be controlled through the platform and APP: tape feeding, collection, microscopic imaging, recycling and other actions.
11. Remote upgrade and maintenance: The latest program can be directly updated remotely and automatically, without manual replacement on site.
12. Multiple data access methods: the platform can be accessed through the PC terminal, and the mobile APP can be used to view data and control device actions.
13. Standard 4G communication module, optional 5G communication module.
14. With a fault self-diagnosis mechanism, equipment fault information can be reported to the remote server in real time. After-sales personnel can view equipment failure information through the platform.
15. It can be equipped with an intelligent solar power supply management system, which can collect key information such as equipment power consumption, solar power generation, battery voltage, equipment load, and current and upload it to the server (optional).
16. With flow alarm function. The device can be bound to the traffic card through the platform, and the alarm information will be automatically pushed when the traffic is abnormal.
3. Technical parameters of sheath blight detector
1. Material: GB32080-92 stainless steel;
2. Data transmission method: 4G/5G network (optional), wired network;
3. Power supply voltage: AC 220V±5%;
4. Power: 200W;
5. Timing: 5 time periods can be set;
6. Carrier tape: Length: 150M Width: 0.025M, which can meet the consumption of 600 days;
7. Wind speed at gas collection port: 0.3~5m/s;
8. Insulation resistance: ≥2.5MΩ;
9. Air temperature: -30~80℃, accuracy: ±0.3℃
10. Air humidity: 0~100%, accuracy: ±3%
11. Wind speed: 0~30m/s, accuracy: ±0.1m/s
12. Wind direction: 0-359° Accuracy: ±1°
13. Rainfall: 0~4mm/min, error: ±0.1mm
14. Atmospheric pressure: 0-1100hpa, accuracy: 0.1hpa