The unmanned traction robot adopts multi-sensor fusion SLAM technology, including laser, vision, and satellite navigation sensors, to transport goods with trailer equipment, autonomously completing cargo transfer in different operating environments, both indoors and outdoors. It significantly improves the capacity and efficiency of internal logistics in the factory.
The unmanned traction robot integrates multiple-line laser, vision cameras, RTK, inertial navigation equipment, ultrasound, and millimeter-wave radar, combined with multi-sensor adaptive fusion algorithms, environment recognition algorithms, path planning algorithms, and high-reliability control algorithms to achieve all-weather, full-featured unmanned driving.
Autonomous Navigation
The robot autonomously completes the transport of heavy goods between two or more points.
Remote Monitoring
The current operating status of the transport robot can be remotely monitored in real-time via a mobile app.
Automatic Unhooking
Cargo can be automatically unhooked without human intervention.
Self-Controlled Loading and Unloading Time
On-site operators can autonomously control the loading and unloading time according to the work rhythm.
Product Spotlight
01
Adaptation to Complex Dynamic Indoor and Outdoor Environments
Capable of handling slopes, indoor and outdoor environments, and high-speed mixed traffic with humans and vehicles.
02
Multiple-Line Laser Scanning and Natural Environment Perception
No need for location-based infrastructure, not reliant on satellite navigation, and efficient construction of high-precision maps with simple upgrades.
03
3D-SLAM Algorithm
High positioning accuracy to the centimeter level, with strong anti-interference capabilities.
04
Fast Mapping
Three-dimensional real image point cloud maps for AR navigation.
The robot is available for scenarios such as final assembly logistics, engine logistics, stamping logistics, and body logistics in automotive manufacturing bases. The variety of parts and packaging sizes makes it difficult to distribute logistics due to the inconsistent packaging forms and sizes. Using unmanned tractors can minimize the disruption of the original distribution mode and upgrade it in a more traditional way, while reducing the cost of factory tooling modifications, ultimately achieving perfect coexistence and collaboration with traditional manual logistics.
Application Value
The unmanned traction robot achieves unmanned driving within the site, replacing manual labor to complete the transportation of heavy goods. It can accomplish automatic transformation of loading and unloading, transportation, distribution, and warehousing in the factory and industrial park, as well as the transfer of goods between warehouses and workshops. Through precise task scheduling, route planning, remote monitoring, and cloud scheduling, the unmanned operation in the industrial park is completed, making logistics transportation safer, more efficient, and lower-cost, improving the operational efficiency of the industrial park.
Application Value
The unmanned traction robot can carry out unmanned logistics operations at the airport for transporting luggage and cargo, completing the round-trip operations from the terminal transfer area and airport pier to the apron. The unmanned operation reduces the occurrence of airport safety accidents and greatly improves the transportation efficiency of the airport.
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