HONOR Demonstrated Eye-Controlled Vehicle Tech

The company showcased AI technology that allows drivers to start, stop, and maneuver vehicles using eye-tracking.

Updated on Sept. 24, 2026 in Performance Vehicles

Isometric editorial illustration of a precision sensor lens module, representing modern eye-tracking automotive technology.
HONOR has introduced AI-powered eye-tracking technology, allowing drivers to maneuver vehicles and perform basic operational tasks through gaze-based input. AI Illustration. Upload story photo >

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In early 2024, HONOR introduced an AI-powered eye-tracking feature for vehicle control. The technology enables drivers to perform tasks like starting an engine or moving a car using only their gaze.

Why it matters

The development represents a push into hands-free automotive control systems, utilizing internal sensors and AI to interpret human intent. This technology could fundamentally change how drivers interact with vehicle interfaces.

The system utilizes 4 distinct eye commands to control engine status and vehicle movement. It relies on a front-facing sensor and AI algorithms to translate gaze patterns into actionable vehicle functions.

The players

HONOR

HONOR is a consumer electronics manufacturer that focuses on smartphone technology and AI-integrated software solutions.

Professor James Brighton

Professor James Brighton is an automotive engineer who collaborated with HONOR on the integration of eye-tracking controls for vehicles.

The details

Developed in collaboration with automotive engineer Professor James Brighton, the HONOR Magic6 Pro technology interprets eye movements directed toward specific UI icons. These advanced algorithms process visual input to execute commands, including engine ignition and forward or backward navigation.

Timeline

  1. The technology was showcased throughout 2024.

Roadmap

This development reflects a broader industry movement toward replacing physical inputs with biometric and gaze-based interfaces. It positions HONOR among developers exploring deeper integration between mobile computing and automotive hardware.

The availability of this technology could eventually change daily vehicle operation by reducing the need for physical switches or touchscreen inputs. Drivers may experience new maintenance expectations related to the calibration of sensor hardware within the cabin.

The takeaway

Using eye-tracking for vehicle navigation highlights the growing capability of consumer AI to interact with physical machinery. Future adoption will depend on how reliably these systems can differentiate between intentional commands and natural gaze shifts while driving.

Further reading

Learn more about the latest innovations in Performance Vehicles.

Source note: This article includes information reported by The Piston Show.

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Would you trust an AI-powered eye-tracking system to control your vehicle?