ATH-6010 is a portable ground hyperspectral imaging instrument with automatic scanning function suitable for field operations. The system consists of a hyperspectral camera (ATH-1030), a high-precision scanning mirror module, an embedded power supply module, a portable tripod, and other components.
ATH-6010 is designed for field surveys and high-precision remote sensing applicationsPortable Ground Hyperspectral ImagerThe system integrates advanced optical sensing technology, automatic scanning control, and embedded power supply solutions, with high integration and portability. It can achieve high-quality and efficient ground target spectral information acquisition without relying on complex external devices.
1、 System composition and core advantages
The ATH-6010 system mainly consists of a hyperspectral imaging camera (ATH-1030), a high-precision scanning mirror module, an embedded integrated power supply module, and a portable quick setup tripod. Its core component - ATH-1030 hyperspectral camera, adopts a fully independently developed optical system and imaging technology, equipped with a 1-inch large target CCD image sensor. This sensor not only has excellent spectral resolution and high sensitivity, but also has a wide field of view and superior imaging quality, which can capture the delicate spatial and spectral features of the target object.
To achieve continuous and stable imaging of ground targets, the system is equipped with a customized high-precision scanning galvanometer module. This module can achieve automatic speed matching and precise swing scanning imaging, ensuring that distortion free and highly consistent strip data can still be obtained in dynamic outdoor environments. In addition, the design of embedded power supply module eliminates the complexity and inconvenience of traditional external power supply, realizes the internal power self-sufficiency of the system, and significantly improves the overall integration of the equipment and the mobility of field operations. Combined with a portable tripod that can be quickly unfolded and stored, the entire system can be deployed in a short period of time, truly achieving "ready to use".
2、 Core features of the system
High performance imaging coreBy combining the ATH-1030 hyperspectral camera with a large target CCD sensor, high-quality spectral data from visible light to near-infrared bands is provided.
Intelligent scanning imagingHigh precision scanning galvanometer supports automatic speed matching, achieving stable and efficient push or swing scanning imaging, adapting to different measurement distances and speed requirements.
Highly portable and user-friendlyThe integrated embedded power supply and lightweight tripod design make the system easy to carry and quickly set up, suitable for various outdoor and mobile monitoring scenarios.
A complete software ecosystemProvide portable control and data acquisition software with a user-friendly interface; The collected data format is compatible with mainstream remote sensing processing platforms such as ENVI, making it easy for subsequent analysis. Equipped with real-time preview software for hyperspectral data, it can quickly view images and spectral curves on site, achieving real-time control of data quality.
Flexible customization capabilityThe system supports customized development based on specific user needs and can adapt to different models or spectral ranges of hyperspectral cameras, expanding their application boundaries.
3、 Widely applicable fields
With its excellent portability and high performance, ATH-6010Portable Ground Hyperspectral ImagerHas significant application value in multiple fields of science and engineering:
agricultural sectorUsed for crop growth analysis, early monitoring of pests and diseases, diagnosis of nutrient deficiencies such as nitrogen, phosphorus, and potassium, assessment of drought and flood disasters, and yield prediction, to assist in precision agricultural management.
forestry sectorSupport tree species classification and identification, estimation of forest biomass, inversion of leaf biochemical parameters (such as chlorophyll and water content), and monitoring of forest health status and stress.
Water environment monitoringQuantitatively invert key water quality parameters such as chlorophyll-a concentration, suspended solids content, and colored soluble organic matter (CDOM) in water bodies, and analyze the spatial distribution and migration diffusion patterns of pollutants.
Soil researchUsed to monitor changes in soil surface moisture, evaluate soil organic matter content and fertility status, and assist in soil classification and degradation research.
geological explorationBeing able to identify and plot different mineral types, analyze mineral chemical composition, and provide effective data for mineral resource exploration, deposit genesis research, and geological environment evaluation.
Urban and Ecological ManagementApplied to urban green space planning and vegetation health monitoring, road material and damage identification, environmental pollutant inspection, as well as ecological landscape investigation and evaluation.