Physical AI · Autonomous Mobile Robot
myAGV 2023
Mobile Robot Platform (Education & Research)
Mobile robot platform combining autonomous navigation with a collaborative robot arm. SLAM-based self-navigation optimized for education, research, and automation environments.

myAGV 2023
Key Features
Autonomous Robot for Education & Research
- Ideal for learning robotics and autonomous driving algorithms
- Safe for use in indoor environments
SLAM & Navigation Practice Support
- Map building (SLAM)
- Path Planning
- Obstacle Avoidance
ROS-based Open Platform
- ROS environment support
- Python / C++ development
- Multi-sensor data integration
Compact Indoor Navigation Design
- Operable in desk, lab, and classroom environments
- Safe experimental environment with low speed and load
Specifications
AGV Product Specifications
| Specification | Description |
|---|---|
| Navigation Method | Magnetic tape, QR code, guide wire, fixed markers |
| Autonomy Level | Low |
| Path Flexibility | Fixed path only |
| Obstacle Avoidance | Limited or stop-only |
| Environment Adaptability | Low |
| Control System | Predefined route control |
| Payload Capability | Medium to high (model-dependent) |
| Speed | Constant, predefined |
| Integration with Robot Arm | Not supported |
| Typical Applications | Factory material transport, repetitive logistics |
| Operating Environment | Structured industrial environments |
Product Video
myAGV 2023 Demo Video
Use Cases
Applications in Various Environments

Autonomous Navigation

SLAM Mapping

Cobot Arm Integration
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