Automated Guided Vehicles (AGVs)
Automated Guided Vehicles (AGVs) are an integral and increasingly essential part of modern warehouse management solutions. These autonomous, self-guided vehicles are expertly designed to efficiently transport materials, products, and goods within a warehouse or distribution center, optimizing workflow and markedly improving productivity. AGVs can navigate through the facility with remarkable precision, following predetermined paths or swiftly responding to real-time instructions, to seamlessly move items from one location to another. This innovative technology significantly reduces the need for manual labor, drastically enhancing the overall efficiency and productivity of the warehouse management system. By implementing AGVs, businesses can streamline operations, minimize human error, and ultimately create a safer working environment, leading to increased operational success in today’s fast-paced logistics landscape.

AGV SYSTEM STRUCTURE


AGV NAVIGATION SYSTEM
Navigation System
Navigation system is key to its performance. It impacts how the vehicle moves around, how it interacts with obstacles. Our technologies can be used for vehicle location and navigation throughout the facility’s layout.
Line Following
The vehicles are equipped with a specific sensor to follow a physical line on the ground. e.g. Magnetic tape, Magnetic nail, Inductive wire

PROS:
• Reliable
• Accurate
• Not affected by changes in environment
CONS:
• Time-Consuming/Expensive to install
• Time-Consuming/Expensive to modify
• Fleet management difficult
Tags Navigation
The vehicles are equipped with a specific sensor which follows a route defined by tags. QR/ Code reader

PROS:
• Reliable
• Accurate
• Not affected by changes in environment
CONS:
• Time-Consuming/Expensive to install
• Time-Consuming/Expensive to modify
• Fleet management difficult
Laser Navigation
The position of the vehicle is triangulated using laser beams that are reflected back from reflectors. The paths followed are virtual.

PROS:
• Reliable
• Accurate
• Modification simple
• Not affected by changes in environment
CONS:
• Installation or reflectors Time-Consuming/Expensive
Natural Navigation (Slam/Free Navigation)
Uses points measured with a vehicle’s laser scanners to identify structures in the environment are regularly re-scanned, and the paths followed are virtual.

PROS:
• Quick & Simple to install/modify
• Accurate
• Not affected by changes in environment
CONS:
• Sensitive to change in environment
• Additional laser scanners add cost
Vision Guidance
The vehicles are equipped with a specific sensor which follows a route defined by tags. QR/ Code reader

PROS:
• Reliable
• Accurate
• Not affected by changes in environment
CONS:
• Time-Consuming/Expensive to install
• Time-Consuming/Expensive to modify
• Fleet management difficult

AIT1 | Autonomous mobile robot (AMR)
Autonomous mobile robot (AMR) that builds for high-load top lift handling and large-scale cluster scheduling logistics scenarios. In ultra-low temperature work conditions, AMR can conduct stable and continuous operation.


AIT1 Specification




Application






AIT2 | Pallet Mover
AIT5 Specification








Product Advantages
- Autonomous Item searching: Utilizes high-precision visual algorithms to intelligently locate pallets and adjust fork direction, even when pallets are irregularly or disorderly placed.
- Automatic Transport: Based on mapping and positioning using natural environmental features, it can navigate and plan routes autonomously without the need for tracks or landmarks.
- Safety and Reliability: Multi-level safety measures including 3D vision, LiDAR, emergency stop button, and collision bars provide 360° omnidirectional stereoscopic safety protection.
- Autonomous Charging: Equipped with autonomous charging capabilities, it charges itself when the battery is low or completes charging at specified times
Applicable Industrie
- Suitable for E-Commerce Warehouses and Factory Storage Facilities.
- High-Frequency Loading and Unloading with High Docking Precision and Material Cage Stacking Requirements.
- Multi-Shift, 24/7 Operation
Product three views

Technical parameters







Applications




AIT3 | Counterbalance Staker
Precision, Safety, and Efficiency for 24/7 Intelligent Logistics.
The Counterbalance Robot offers 2000kg load capacity and 4500mm lift height.
It uses high-precision vision to adjust for irregular pallets, navigates without markers, and plans paths autonomously. Equipped with 3D vision, LiDAR, and safety features, it ensures 360° protection.
Autonomous charging supports continuous 24/7 operation,
ideal for high-frequency tasks in e-commerce and warehouses.
AIT3 Specification







AIT4 | Reach Truck AGV
A natural navigation forward-moving unmanned forklift with multi-line laser radar technology.
It has the advantages of flexible operation and high lifting,
which can meet the requirements of picking up and putting goods on high shelves,
which is conducive to improving the space utilization rate of storage.
It is suitable for automatic loading and unloading of high-bay cargo spaces in smart warehouses.
AIT4 Specification






ROBOTIC CONTROL SYSTEM (RCS)
The ROBOTIC CONTROL SYSTEM (RCS), It integrates mobile robots with factory automation, enabling intelligent planning and dispatching. Powered by a low-code business process engine, RCS simplifies scenario construction, allowing rapid customization and deployment, enhancing operational efficiency.




Multi-Brand Hybrid Scheduling
Efficiently coordinates operations of different types and brands of robots, enabling simultaneous tasks such as picking, material handling, box transfer, and business interfacing in the same environment.
Customization
Low-code engine for quick assembly of pre-built code modules, significantly reducing application development time and greatly improving efficiency in meeting requirements.
Algorithm
Single map supports the efficient scheduling of 1,500+ robots, ensuring real-time, precise task matching.
Supports the concurrent execution of thousands of tasks, flexibly adapting to various task types, ensuring both scheduling efficiency and flexibility.
Stability
Distributed deployment ensures system stability, with multi-machine hot backup and seamless switching, supporting gray release and ensuring continuity and smooth business flow.
Simulation
Low-code simulation of business processes, from task trigger to execution, with 1:1 simulation accuracy. Simulation data accuracy exceeds 99.5%.