INTELLIGENT CONNECTIVITY COLLABORATIVE
INNOVATION AND RESEARCH PLATFORM
INCPAR PLATFORM
Conceptual Framework
Smart Roads
Road Infrastructure Upgrade and Renovation
Holographic Intersection/

Holographic Road
Smart Vehicles
Smart Connected Vehicle Upgrades and Retrofitting
Connected Upgrades/

Perception Sharing/



Active Safety/
Autonomous Driving
Collaborative Cloud
Cloud-Based Control and Management
Scenario Building/

V2X Communication/


Data Infrastructure/

Cloud Control Platform
CIDI adheres to the new engineering education concept, promotes the innovative application of vehicle-road coordination and autonomous driving technology, and builds a leading full-stack intelligent connected teaching, research, and training platform. It assists in the cultivation of talents in the fields of automotive, transportation, electronic information, and more, while achieving close collaboration between industry, academia, and research. The industry-academia-research platform covers technologies such as autonomous driving, intelligent perception, V2X, 5G communication, Beidou positioning, high-precision mapping, and traffic control. It provides an innovative platform for the development of cutting-edge disciplines and professional education in fields such as transportation, automation, software engineering, communication engineering, and vehicle engineering. This platform helps in the construction of a world-class intelligent connected professional system and the training of innovative talents to promote industry development.
Campus Scene Example
10 9 8 7 6 5 4 3 2 1 beginning: Technology Building endpoint: library Collaborative Cloud Smart Vehicles Smart Roads
01
Site Selection
Select a section of the campus road, with a total length of 2-3 km. Deploy ten intelligent nodes along the road and one intelligent node at a traffic signal intersection.
02
Characteristics
The demonstration route is a secondary road, ensuring it does not majorly disrupt traffic flow. It lacks complex pedestrian areas, maintains a safe and manageable traffic environment, has minimal intersections with major roads, exhibits good overall continuity, features a moderate length, offers optimal cost-effectiveness, and has a controllable construction timeline.
03
Objectives
The main objectives are to ensure traffic safety and create a compact demonstration showcase for 5G-Vehicle-Road Cooperative Systems and autonomous driving research training, along with piloting cutting-edge applications.
Use Cases
Tongji University
Lanzhou University
Chang'an University
Chongqing University
Changsha University
of Science and Technology
Wuxi Institute of Technology
Shenzhen Polytechnic College
Liaoning Provincial Transportation Vocational College
Yantai University
Hangzhou Vocational and Technical College
Contact information
15111210600(WeChat and Phone with the Same Number)
Building A3-A4, Inspection and Testing Special Industrial Park, No. 336, Xueshi Road, YueLu District, Changsha, Hunan Province, China
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