Sensors such as visible light, thermal infrared, hyperspectral, and 3D imaging can be optionally equipped according to demand, enabling autonomous and unmanned driving in outdoor environments, achieving automatic acquisition of comprehensive phenotypes of crops such as wheat, rice, and cotton at different growth stages, and providing data support for crop breeding and pruning management in field environments. The application of high-throughput phenotype detection robots in the field can improve the efficiency of crop phenotype detection and provide guarantees for crop functional gene mining and efficient breeding.
This is a descriptive text that further describes how powerful this robot is, it's like a monkey's thunder.
This is a descriptive text that further describes how powerful this robot is
This is a descriptive text that further describes how powerful this robot is, it's like a monkey's thunder.
This is a descriptive text that further describes how powerful this robot is
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Not exceeding 2 * 1.8 * 2.5m (customizable)
Four wheel independent drive independent steering
Satellite+Vision Fusion Navigation
pure electric
Lidar, hyperspectral, thermal infrared, visible light
Full time homework for 5 hours
0-1m/s
0-1m/s
Less than 3 hours per acre
Target plants not exceeding 1.5 meters in height (customizable) include corn, wheat, rice, rapeseed, cotton, soybeans, etc
Equipped with visible light, point cloud, hyperspectral, and thermal infrared data processing and analysis software, supporting customization, capable of analyzing over 300 phenotypic traits