The cloud monitoring analyzer integrates visible light and near-infrared sensors, which capture the edges of cloud layers using visible light under strong light (sunny day), and identify thickness and distribution through near-infrared penetration of cloud layers under weak light (cloudy day, evening), ensuring data stability under complex lighting conditions. Through high-resolution cameras or fisheye lenses (with a viewing angle of up to 175 #176; -220 #176; )Capturing cloud images of the entire sky, combined with intelligent image processing algorithms, accurately identifying cloud boundaries, shapes, colors, and types (such as cumulus clouds, stratiform clouds, and cirrus clouds), calculating total cloud cover (percentage of the sky covered by clouds) and layering ratios (distribution of low, medium, and high cloud layers).
Cloud monitoring analyzerIntegrating visible light and near-infrared sensors, using visible light to capture cloud edges in strong light (sunny days), and using near-infrared to penetrate cloud layers in weak light (cloudy days, evening) to identify thickness and distribution, ensuring data stability under complex lighting conditions. Capture full sky cloud images through high-resolution cameras or fisheye lenses (with a viewing angle of up to 175 ° -220 °), combined with intelligent image processing algorithms, accurately identify cloud boundaries, shapes, colors, and types (such as cumulus clouds, stratiform clouds, and cirrus clouds), calculate total cloud cover (percentage of the sky covered by clouds), and layer ratio (distribution of low, medium, and high cloud layers).

Cloud monitoring analyzerBy utilizing advanced machine learning techniques and large-scale model algorithms, combined with professional optical sensing technology, it is possible to accurately calculate the cloud cover in the sky and the proportion of sunlight passing through the clouds, providing more precise data than traditional methods.
Any lighting environment automatically captures the impact of clouds on sunlight, and highly sensitive optical sensors make the data obtained in any environment more accurate and reliable.
| parameter |
(4G version) |
| Annual stability |
±1% |
| Open angle |
4° |
| time constant |
≤10S(99% |
| sampling frequency |
30s~86400s |
| store data |
>180 days |
| Networking requirements |
4G |
| data output |
Status indicator: Cloud cover level, Sun occlusion rate, Clear sky percentage, Less clouds percentage, Cloudy sky percentage, Semi cloudy sky percentage, Cloudy sky percentage, Latitude data, Longitude data, Sun altitude angle, Sun direction angle, Transmittance curve, All day percentage analysis chart |
| output method |
APIJson format |
| Operating Temperature |
-40~80℃ |
| Protection level |
IP67 |
| weight |
10kg |
| power supply |
DC12-20V |
| Current power consumption |
Maximum power consumption of 7W, normal working average power consumption of 1W |
| Data/power line |
10m (standard) |