Intelligent System

The GAC intelligent ecosystem is built on four core pillars

Scenario-based

Electrification

Intelligentization

Digitization

ADiGO Autonomous Driving System

GAC Research Institute is fully engaged in Autonomous Driving R&D, leveraging the GAC X-Soul EE Architecture to develop key algorithms and software. It integrates autonomous driving perception, decision-making, chassis by-wire, and dynamics control, establishing a unique GAC autonomous driving technology ecosystem.

A silver autonomous vehicle stopped at an intersection with green traffic lights in an urban setting.

GAC L4 Autonomous Driving

The GAC L4 Autonomous Driving System utilizes vehicle-grade components, including Solid-State LiDAR, Ultra-High-Definition Visual Sensors, and Embedded Computing Units, to create a secure and reliable system-level solution with a focus on functional safety and information security.

Four cars parked in designated parking spots, with some parking spots marked for handicapped accessibility.

FAPA Integrated Parking Controller

GAC's independently developed technology offering vertical, parallel, diagonal, and remote parking functions. It recognizes both space and line parking spaces to cover most market scenarios. With OTA support, it continuously improves and optimizes parking solutions.

Futuristic cityscape with autonomous cars on a smart highway featuring digital lane markings and holographic overlays.

5G V2X Vehicle Intelligent Communication System

Launched on the Aion V in 2020, it delivers high-speed, low-latency 5G connectivity. As China's first mass-produced V2X application, it connects vehicles, people, and infrastructure, enabling ultra-long-range perception.

Garcia Intelligent Driving System

Intelligent Driving, Absolute Safety

The Garcia Intelligent Driving System excels in complex environments without relying on high-precision maps or laser radars. By integrating visual sensors and advanced AI algorithms, it achieves human-like perception, enabling broader coverage and a streamlined hardware setup. Its mission is to deliver a richer, freer driving experience across all scenarios.

Top image shows a drone view of cars on a complex traffic road with multiple lanes, some vehicles turning, and a guardrail along the side. Bottom image depicts a drone view of a mountain road with a large curve, surrounded by trees and vegetation.
Two images showing autonomous vehicle technology. The first image depicts a car at a traffic light with lane markings and a digital overlay indicating traffic signal recognition, while the second image shows a car on a winding road with a digital overlay guiding the vehicle's path and emphasizing avoiding recognizing pedestrians.

Mastering the Most Challenging Parking Scenarios

Parking function

GAC X-Soul EE Architecture

A Highly Integrated and Outstandingly Performing System

Digital illustration of a futuristic vehicle with interconnected technology components, including circuits, sensors, and a cloud icon.
Digital illustration of a futuristic vehicle with interconnected technology components, including circuits, sensors, and a cloud icon.

Composition

Consists of Digital Mirror Cloud, Three Core Computer Clusters (Central, Intelligent Driving, Infotainment), and Zone Controllers.

Technical Integration

It integrates Gigabit Ethernet and 5G technologies, and also possesses technologies such as Information Security and Functional Safety.

Performance Leap (Vs Prev Gen)

  • Computing Power: Up 50x

  • Data Rate: Up 10x

  • Harness Loops: Cut ~40%

  • Controllers: ~20 Fewer