Shandong Fengtu IOT Technology Co., Ltd
Sales Manager:Ms. Emily Wang
Cel,Whatsapp,Wechat:+86 15898932201
Email:info@fengtutec.com
Add:No. 155 Optoelectronic Industry Accelerator, Gaoxin District, Weifang, Shandong, China
Sales Manager:Ms. Emily Wang
Cel,Whatsapp,Wechat:+86 15898932201
Email:info@fengtutec.com
Add:No. 155 Optoelectronic Industry Accelerator, Gaoxin District, Weifang, Shandong, China
Model:FT-GK1
Brand:fengtu
Name: High altitude insect detection lamp
High altitude insect detection lamp can effectively attract migratory insects at 500-1000 meters, and has strong trapping effect on migrating, transiting and migrating insect groups.
Main purpose:
The High altitude insect detection lamp is specially developed and designed for monitoring the migration dynamics of high altitude migratory pests such as the fall armyworm. It can effectively monitor the population dynamics of migratory pests and has a strong trapping effect.
Analyze and predict the occurrence and development of insect pests, provide services for modern agriculture, and meet the needs of insect prediction and specimen collection.
Working principle:
The High altitude insect detection lamp utilizes the phototaxis of pests by irradiating a beam of light toward high altitudes. When high altitude migratory pests invade the area monitored by the detection lamp, they will be attracted by the light source and fly toward the light source. During the flight, they will hit the impact screen and fall into the processing chamber.
Using modern optical, electrical, numerical control and other technologies, the system can trap insects, kill insects at high temperatures, transport with conveyor belts, and automatically operate the entire lamp. Without human supervision, it can automatically complete system operations such as trapping insects, killing insects, dispersing insects, taking photos, transporting, collecting, and draining. Then, it can use wireless transmission technology and Internet of Things technology to upload environmental weather and pest conditions to the designated agricultural cloud platform in real time.
Power supply: 220VAC. Due to the large power of the whole machine, it cannot be equipped with solar power supply.
Equipment power consumption: whole machine power consumption: ≤1500W; standby power consumption ≤4W;
Working environment: 0~70℃, 0~85% (relative humidity), no condensation
Insulation resistance: ≥2.5MΩ (leakage protection)
High altitude insect detection lamp main structure:
Machine size: 2102mm*840mm*840mm.
The insect monitoring instrument is equipped with a mounting base by default. The base height is 40cm, which is used to prevent rainwater from flowing back into the central control box during the rainy season.
High altitude insect detection lamp consists of an insect attractant, an impact plate, an insecticidal device, a high-definition camera, an Android main control system, mechanical components, rain and snow sensors, light sensors, a professional metal box frame, and an installation base.
Insect traps:
1000W metal halide searchlight, irradiation height 500-1000m.
Lamp start-up time ≤5S.
The insect attractant is surrounded by impact screens, which are made of highly transparent glass and are at an angle of 120 degrees. The size of a single screen is: 595±2mm in length, 213±2mm in width, and 5mm in thickness.
Insecticide device:
The upper and lower layers of far-infrared insect processing chambers have a mortality rate of no less than 98% and an insect completion rate of no less than 95%.
After the far-infrared insect treatment chamber works for 15 minutes, the temperature can reach 85℃±5℃.
Camera parameters:
This device supports 500W pixel cameras, which are plug-in compatible for easy on-site replacement.
The camera can be used to collect real-time information about insects on the conveyor belt, and the clarity of the captured images can meet the requirements for manual identification of insect species.
Android main control system:
The main control system uses a 7-inch Android touch screen.
Supports local viewing of real-time device status, changing device working mode, and individually controlling the startup and operation of each component of the device.
Supports local backup, viewing, and continued transmission of insect photos after network disconnection.
Supports remote program upgrade, GPS positioning, automatic time calibration, local parameter setting, camera debugging and other functions.
Communication method:
Support 4G communication, Ethernet RJ45 communication, and WiFi communication.
Mechanical components:
The interior of the box contains insect rain baffles, insecticidal baffles, drying baffles, vibration devices, insect moving devices, fill lights, cameras and other mechanical devices and control execution equipment.
The vibration device of the High altitude insect detection lamp can vibrate the trapped insects, so that the insects are evenly scattered and spread on the conveyor belt to avoid insect accumulation and ensure that each insect feature can be clearly photographed. Combined with the platform software AI analysis and recognition system, it can ensure that insects trapped in different time periods are not confused.
Rain Control Technology:
The on-site weather conditions are detected through rain and snow sensors. The system will operate normally when there is no rain or snow, and will stop operating when there is rain or snow.
After identifying rainy and snowy weather, the opening and closing direction of the insect-rain baffle is controlled to separate insects from rain.
Light control technology:
The light intensity on site is detected by the light sensor and is not affected by instantaneous strong light.
When the light intensity is less than the program setting value, the control device operates normally; when the light intensity is greater than the program setting value, the control device stops operating.
Time control technology:
You can set the work start time, working time, single working cycle time, insect attractant light on time, delayed on time after rain, etc.
Working Mode:
Supports automatic working mode, manual working mode, and working mode switching.
Automatic working mode workflow: high-altitude migratory pests are attracted by the searchlight light source → fly toward the light source along the light path → hit the impact plate → fall into the insecticide chamber after the collision → the insecticide chamber kills the insects with high temperature → the insecticide baffle flips → the insect carcasses fall into the drying chamber → the drying chamber is dried at high temperature, and after the drying is completed → the drying baffle flips → the insect carcasses fall onto the vibration plate → the vibration plate starts → the insect carcasses are spread onto the conveyor belt → the conveyor belt transports the flying insect carcasses to the camera → take pictures → upload pictures to the server.
Manual working mode introduction: supports controlling the operation of each mechanical component through the cloud platform and insect monitoring APP.
High altitude insect detection lamp installation method:
(1) Select a suitable installation location for the insect detection cabinet, prefabricate a flat hard cement platform as far in advance as possible, and then drill holes according to the fixed size of the base.
(2) Use the expansion screws in the accessories to install them into the 8 holes.
(3) Align the eight expansion screw holes of the four corner raised weld feet under the equipment support column, and tighten them with a wrench.
Insect monitoring platform:
The insect monitoring platform can be logged in and managed by different accounts according to different permissions, and can allocate at least 8 levels of accounts with different permissions.
The insect situation monitoring platform can remotely view the current working status of each component of the High altitude insect detection lamp, and the status can be stored and the historical records can be viewed.
Users of the insect monitoring platform can add pest species.
The insect pest monitoring platform has statistical charts of pest species and quantity changes by region and time, including bar charts and line charts.
The insect monitoring platform uses the second-generation insect database for AI automatic analysis, and users can supplement and correct the AI analysis results by themselves.
Secondary development:
A professional insect monitoring platform and APP client are provided free of charge, and the platform can provide an API interface.
High altitude insect detection lamp can provide SDK development interfaces based on Java and C#.
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