Client Name
Implementation Location
Construction Project for Intelligent Connected Vehicle Training System
Construction Project for Intelligent Connected Vehicle Training System
Focused on cultivating professional talents for the future automotive industry, the construction project for intelligent connected vehicle training system builds a highly‑simulated and fully‑covered learning and practice platform with a series of advanced training equipment.
Case Details
Focused on cultivating professional talents for the future automotive industry, the construction project for intelligent connected vehicle training system builds a highly‑simulated and fully‑covered learning and practice platform with a series of advanced training equipment. The key components covered by this project are introduced in detail below:
High‑end Version Intelligent Sand Table Miniature Vehicle
The high‑end version intelligent sand table miniature vehicle acts as a condensed world of intelligent connected vehicles. It can not only simulate the driving status of real vehicles in complex traffic scenarios, but also integrate advanced intelligent driving technologies. By operating the miniature vehicle, learners can gain in‑depth understanding of the overall operation logic of intelligent connected vehicles, such as path planning and autonomous driving decision‑making. With the supporting sand table environment, learners can directly observe the interaction between vehicles and surrounding environments, providing an excellent practical scenario for understanding the behavioral patterns of intelligent connected vehicles on real roads.
Binocular Camera Vision Sensor Training Platform
Binocular camera vision sensors are core components for environment perception of intelligent connected vehicles. This training platform enables learners to explore the working principles of binocular cameras, and learn to apply binocular vision technology for target recognition, distance measurement and 3D environment reconstruction. Through hands‑on operation and data analysis, learners can master core skills including camera calibration, image acquisition and processing, and improve capabilities of solving practical perception problems with binocular camera vision sensors.
Vehicle Attitude Sensor Training Platform
Vehicle attitude sensors are critical for intelligent connected vehicles to accurately perceive their own status. On this training platform, learners can study the working principles and characteristics of various vehicle attitude sensors such as accelerometers and gyroscopes. Through sensor installation, commissioning combined with vehicle dynamic simulation, learners can deeply understand the acquisition and processing of vehicle attitude information, offering technical support for stable control and precise navigation of intelligent connected vehicles.
Ultrasonic Radar Sensor Training Platform
Ultrasonic radar sensors play a vital role in short‑range detection for intelligent connected vehicles. The training platform offers learners comprehensive insights into ultrasonic radar, including its hardware structure and principles of sound wave transmission and reception. Through practical operations, learners master target detection and distance measurement methods of ultrasonic radar, learn to analyze and process radar data, and enhance practical capabilities in short‑range perception.
Millimeter‑Wave Radar Sensor Training Platform
Featuring high precision and reliability, millimeter‑wave radar sensors serve as core devices for medium‑and‑long‑range detection in intelligent connected vehicles. On this platform, learners can study complex working principles of millimeter‑wave radar including Frequency Modulated Continuous Wave (FMCW) technology. Via hands‑on operations and data interpretation, learners proficiently master key skills such as target recognition, velocity measurement and angle detection, and understand its vital role in intelligent driving systems.
LiDAR Sensor Training Platform
As the “eyes” for environment perception of intelligent connected vehicles, LiDAR delivers high‑precision 3D environmental information for vehicles. The LiDAR sensor training platform allows learners full access to LiDAR working mechanisms, from laser emission and echo reception to point cloud data generation and processing. By collecting and analyzing LiDAR data, learners master methods for environment modeling, target recognition and tracking based on point cloud data, laying a solid foundation for in‑depth study on perception technologies of intelligent connected vehicles.
Through the organic combination of above‑mentioned equipment, the construction project for intelligent connected vehicle training system establishes a complete training system ranging from basic principle learning to practical application operation, delivering an all‑round learning experience for learners to explore intelligent connected vehicle technologies.
Implementation Effect
Classroom interaction rate increased by 45%, with significantly higher student engagement
Teachers’ lesson‑preparation time reduced by 25%, allowing more focus on teaching content design
Visualized teaching data to facilitate school‑level teaching quality monitoring
Recording‑and‑playback system supports after‑class review to boost teachers’ professional development
Unified management of all equipment, cutting school operation‑and‑maintenance costs by 15%