Intelligent Connected Vehicle (Low-Speed) Training and Development Platform
This equipment serves as a low-speed training and development platform for intelligent connected vehicles. Based on a drive-by-wire chassis and Ackermann steering structure, it integrates a 16-line Li
Product Overview
This equipment serves as a low-speed training and development platform for intelligent connected vehicles. Based on a drive-by-wire chassis and Ackermann steering structure, it integrates a 16-line LiDAR, forward intelligent camera, millimeter-wave radar, ultrasonic radar, and autonomous driving computing platform to create a comprehensive teaching and development environment for intelligent connected vehicles. The equipment can be used for activities such as environmental perception, data collection, multi-sensor fusion, high-precision map construction, path planning, autonomous driving function verification, and system debugging. It meets teaching needs for structural cognition, installation and debugging, data analysis, function verification, fault diagnosis, and system integration, making it suitable for vocational colleges, technical schools, and intelligent connected vehicle training bases to conduct related course teaching and research training.
Core Advantages
Real Components and System Display
The teaching platform is built using real components such as a drive-by-wire chassis, autonomous driving system, autonomous driving computing platform, LiDAR, millimeter-wave radar, cameras, and ultrasonic radar, showcasing the composition and connection relationships of intelligent connected vehicle systems.
System Structure and Installation Position Cognition
Displays the installation layout of LiDAR, forward intelligent cameras, millimeter-wave radar, and ultrasonic radar on the vehicle and their roles in environmental perception.
Data Collection and Visualization
Supports sensor data collection and processing, enabling perception data analysis, positioning data processing, and autonomous driving system debugging training.
Perception Function Testing
Supports testing of perception functions related to obstacle recognition, target detection, navigation tracking, and autonomous driving.
Multi-Sensor Fusion
Supports collaborative operation of LiDAR, millimeter-wave radar, cameras, and ultrasonic radar, enabling training in multi-sensor fusion perception and control optimization.
Algorithm Verification and Secondary Development
Provides Autoware and Apollo autonomous driving system environments, supporting autonomous driving function verification, parameter debugging, algorithm research, and secondary development training.
Drive-by-Wire Chassis Control
Adopts an Ackermann drive-by-wire chassis structure with front-wheel steering and rear-wheel drive, enabling teaching in vehicle motion control, path tracking, and autonomous driving execution control.
Simulation and Scenario Demonstration
Supports multi-scenario autonomous driving demonstrations and training, enabling validation of navigation, tracking, and autonomous driving operation scenarios.
Fault Setting and Diagnosis
Supports troubleshooting of autonomous driving systems, system diagnostics, and training in abnormal situation analysis.
Safety Protection and Stable Operation
The platform is designed for low-speed operation, with a maximum speed of 25km/h, making it suitable for autonomous driving function verification and training activities in teaching and testing scenarios.
Teaching Content & Training Projects
Hands-on training covering the following topics:
- LiDAR Structure Perception
- Millimeter-Wave Radar Structure Perception
- Vision Sensor Structure Perception
- Ultrasonic Radar Structure Perception
- Sensor Installation and Debugging
- Autonomous Driving System Parameter Configuration
- Point Cloud Data Collection and Analysis
- Image Data Collection and Analysis
- Multi-Sensor Data Processing
- Positioning Data Analysis
- Autonomous Driving Function Testing
- Navigation and Tracking Testing
Technical Specifications
| Parameter | Value |
|---|---|
| External Dimensions | 1786×932×1378mm |
| Computing Platform Parameters | CPU: 6 cores, 12 threads, 2.9GHz base frequency; GPU: Dedicated graphics processor, 12GB video memory; Memory: 16GB LPDDR4 2666MHz; Storage: 500GB SSD |
| Drive-by-Wire Chassis | Wheelbase: 1100mm; Maximum speed: 25km/h; Battery capacity: 3kWh 60V; Maximum climbing angle: 30°; Front-wheel steering, rear-wheel drive, Ackermann steering; Minimum turning radius: 1.5m; Rated load: 300kg |
| LiDAR | 16-line LiDAR; detection range 70m-200m |
| Millimeter-wave radar | Detection range 0.2m-250m |
| Vision sensor | 2 million pixels; resolution 1920×1080 |
| Ultrasonic radar | Measurement range 130mm-5000mm |
What's Included
- ✓ 16-line LiDAR
- ✓ Millimeter-wave radar
- ✓ Forward intelligent camera
- ✓ Ultrasonic radar
- ✓ Steer-by-wire chassis
- ✓ Autonomous driving system
- ✓ Autonomous driving computing platform
- ✓ Autoware autonomous driving system
- ✓ Apollo autonomous driving system
- ✓ Training software
- ✓ Intelligent connected vehicle low-speed training and development platform vehicle
Product Category
Automotive teaching equipment — suitable for vocational colleges, technical schools, and automotive training institutions.
Get a Quote for Intelligent Connected Vehicle (Low-Speed) Training and Development Platform
Contact StarBrain for technical specifications, custom configurations, and delivery timeline.
