Intelligent Connected Vehicle Technology

Intelligent Connected Vehicle Technology

Curriculum: Modular, project-based, and certification-oriented training aligned with ICV testing and commissioning standards
Training Model: School–enterprise co-development with work-integrated learning and job-oriented training
Faculty: Teachers · Experts · Industry consultants
Platform: Advanced ICV training systems, 8 core labs, and a C-V2X traffic simulation area
Outcome: Certification-ready skills in vehicle assembly, commissioning, calibration, and testing
Target Partners: Enterprises, educational institutions, industry associations, and other organizations
COURSE DESCRIPTION

Intelligent Connected Vehicle Technology

Course Overview

Intelligent connected vehicle technology integrates automotive engineering, information and communication technology, artificial intelligence, and related fields. It covers key technologies such as environment perception, intelligent decision-making, execution control, and vehicle-road collaboration, creating higher requirements for skilled technical personnel.

This course is outlined for car fabricating, cleverly in-vehicle hardware fabricating, car repair and upkeep, and related divisions. It creates gifted experts with strong work morals, commonsense specialized capability, and development awareness.

Learners create capabilities in the get together, investigating, calibration, testing, and blame investigating of brilliantly associated vehicles and related frameworks or components. The course underpins planning for parts in R&D help, fabricating, operation administrations, testing, and specialized bolster for cleverly associated vehicles.

Why This Course?

1. Curriculum

A modular, project-based, certificate-aligned design aligned with occupational skill standards for intelligent connected vehicle testing, assembly, adjustment, and commissioning.

2. Organization

A school-enterprise dual training model with alternating learning and practice. Partner institutions and enterprises jointly develop training plans, course resources, and teaching tasks.

3. Faculty

Delivered by a team of full-time instructors, enterprise technical experts, and experienced industry consultants. The teaching team combines project practice with structured training experience.

4. Platform

Supported by industry-oriented intelligent connected vehicle training systems, covering eight core training laboratories and a C-V2X intelligent traffic simulation training area for full-process practical training.

5. Outcomes

Learners build complete capabilities in whole-vehicle and system assembly, debugging, calibration, testing, and fault troubleshooting for intelligent connected vehicle applications.

What You Will Be Able to Do?

Intelligent Sensor Assembly, Calibration and Testing

This module focuses on the environment perception system of intelligent connected vehicles. Learners develop skills in whole-vehicle installation, debugging, calibration, testing, and fault troubleshooting for different types of sensors.

  • Select, install, calibrate, and test vision sensors such as cameras.
  • Assemble millimeter-wave radar, configure parameters, and perform performance testing.
  • Arrange ultrasonic radar and verify functional performance.
  • Install and calibrate LiDAR systems and collect sensor data.
  • Assemble combined navigation systems, perform initial alignment, and test positioning accuracy.
  • Integrate and debug sensor fusion systems.

Computing Platform and Drive-by-Wire Chassis System

This module focuses on the computing platform and execution systems of intelligent connected vehicles. Learners develop capabilities in computing platform deployment and the assembly, debugging, and testing of drive-by-wire chassis systems.

  • Select computing platforms and evaluate their performance.
  • Install computing platform hardware and configure the operating environment.
  • Debug sensor data acquisition and transmission.
  • Deploy and verify perception algorithms.
  • Test and optimize platform performance.
  • Assemble, calibrate, and test steer-by-wire, brake-by-wire, and drive-by-wire systems.
  • Complete integrated debugging and fault diagnosis for drive-by-wire chassis systems.

Intelligent Cockpit and Vehicle-Road Collaboration System

This module focuses on human-machine interaction and communication systems. Learners develop capabilities in the assembly, debugging, and testing of intelligent cockpit systems and vehicle-road collaboration systems.

  • Assemble, debug, and test touch and gesture interaction systems.
  • Install, calibrate, and test head-up display (HUD) systems.
  • Debug voice interaction systems and verify functions.
  • Assemble, debug, and test intelligent seat systems.
  • Integrate intelligent cockpit systems and complete fault troubleshooting tasks.
  • Select, install, and debug On-Board Units (OBU).
  • Install, configure, and test Roadside Units (RSU).
  • Deploy and debug edge computing units.
  • Conduct C-V2X communication system integration testing.
  • Test and verify vehicle-road collaboration application scenarios.

Comprehensive Whole-Vehicle Testing for Intelligent Connected Vehicles

This module focuses on whole-vehicle integrated testing. Learners develop skills in functional testing, performance testing, safety testing, calibration, data analysis, and reporting.

  • Test traffic-rule compliance in simulated and real-vehicle scenarios.
  • Test emergency response capabilities, including emergency braking and obstacle avoidance.
  • Test comprehensive driving capabilities in urban road and highway scenarios.
  • Test connected functions, including V2V, V2I, and V2P communication.
  • Complete whole-vehicle calibration and parameter optimization.
  • Prepare testing reports and analyze test data.

What You Will Learn?

Training Module
Content Description
Intelligent Sensor Assembly, Calibration and Testing
Whole-vehicle assembly, debugging, calibration, testing, and fault troubleshooting for sensors, millimeter-wave radar, ultrasonic radar, LiDAR, and combined navigation systems.
Computing Platform Deployment and Testing
Computing platform selection, installation, environment setup, sensor joint debugging, data acquisition, and data analysis.
Drive-by-Wire Chassis System Assembly, Calibration and Testing
Whole-vehicle assembly, debugging, parameter measurement, and fault troubleshooting for steer-by-wire, brake-by-wire, and drive-by-wire systems.
Intelligent Cockpit System Assembly, Calibration and Testing
Assembly, debugging, testing, and fault troubleshooting for touch and gesture interaction, head-up display, voice interaction, and intelligent seat systems.
Vehicle-Road Collaboration System Assembly, Calibration and Testing
Installation, debugging, and testing of On-Board Units (OBU), Roadside Units (RSU), and edge computing units.
Comprehensive Testing of Intelligent Connected Vehicles
Traffic-rule compliance testing, emergency response testing, comprehensive driving capability testing, and connected-function testing.
Automotive Electrical and Electronic Control System Service
Disassembly, assembly, debugging, calibration, testing, and fault repair for automotive electrical and electronic control systems.
Technology Integration Areas
Artificial intelligence: deep learning algorithms for environment perception, target detection and recognition, semantic segmentation, and scene understanding.
Big data: test data analysis, scenario library construction, data mining, and feature extraction.
Cloud computing: edge computing platform deployment, vehicle-road collaboration data processing, OTA upgrades, and remote diagnosis.

Training Platform

Automotive Electrical and Electronics Training Lab

Electrical training benches, multimeters, oscilloscopes, and related equipment support fundamental electrical and electronic skills training.

New Energy Vehicle Training Lab

ADAS new energy vehicle training vehicles, motor drive training benches, and battery management training benches support foundational training in new energy vehicle technology and ADAS applications.

Intelligent Sensor Training Lab

Vision sensors, millimeter-wave radar, LiDAR, combined navigation training benches, and related systems support sensor assembly, calibration, debugging, and testing training.

Computing Platform Training Lab

Computing platform training benches and debugging/testing software tools support computing platform deployment and algorithm testing training.

Drive-by-Wire Chassis System Training Lab

Steer-by-wire, brake-by-wire, and drive-by-wire training benches support assembly, calibration, and debugging of drive-by-wire chassis systems.

Intelligent Cockpit System Training Lab

Voice interaction, visual interaction, and intelligent seat training benches support intelligent cockpit system assembly, debugging, and testing.

Vehicle-Road Collaboration System Training Lab

OBU, RSU, edge computing unit training benches, and C-V2X simulation training areas support vehicle-road collaboration technology training.

Comprehensive Intelligent Connected Vehicle Training Lab

Intelligent connected teaching vehicles and C-V2X intelligent traffic simulation training areas support comprehensive whole-vehicle testing training.

Learning Environment

Company Strength

At E.C.R Academy, we bring unmatched expertise to Intelligent Connected Vehicle Technology training and workforce development. Since 2010, we've delivered professional programs to nearly 500,000 participants across 28 countries, helping over 300,000 learners earn recognized certifications. Our product curriculum is built on 16 years of vocational education leadership, supported by more than 3,300 industry experts and partnerships with over 500 enterprises. Key strengths include:

  • Successfully organized over 150 skills competitions, empowering 30,000+ learners with hands-on ICV testing and commissioning experience
  • Advanced training infrastructure featuring 8 core labs and a dedicated C-V2X traffic simulation area for real-world autonomous driving scenarios
  • Over 60,000 educational resources covering skill standards, courseware, and assessment systems tailored to connected vehicle calibration and diagnostics
  • Deep industry-academia collaboration ensuring your team masters cutting-edge sensor fusion, V2X communication protocols, and certification-ready competencies

Company Strength

FAQ

Q: Who is this course suitable for?

A: This course is suitable for students in automotive, electronic information, computer science, and related programs at vocational colleges; in-service personnel in the automotive industry who want to improve their intelligent connected vehicle skills; career changers who want to enter the intelligent connected vehicle field; and learners interested in the product.

Q: What roles can learners pursue after completing the course?

A: Learners can prepare for roles in intelligent connected vehicle R&D support, including prototype trial production and testing; intelligent connected vehicle manufacturing, including assembly, debugging, calibration, testing, and quality inspection; after-sales technical support; intelligent connected vehicle testing; and intelligent connected vehicle assembly, debugging, operation, and maintenance.

Q: What is the practical training ratio of this course?

A: The course emphasizes the integration of theory and practice. Practical training accounts for more than 60% of the course. Learners complete training projects across eight professional laboratories to build full-process capabilities in assembly, debugging, calibration, and testing.

Contact Us

Contact Us

Ready to build future-ready skills in Intelligent Connected Vehicle Technology? Reach out to E.C.R Academy at ecr2008@enteredu.com to explore our training solutions today.