Advance crosswalk cues on a vehicle display warn drivers before the crosswalk appears, reducing sudden visual hindrance during driving.
Precomputed retrieval positions use door clearance and lane orientation rules to place parked vehicles for safer, easier pickup.
Stoppage-distance-based notification timing prevents nearby pedestrians from misreading autonomous vehicle deceleration and stopping intent.
Sensor-fused AR guidance helps riders find an autonomous vehicle at pickup or drop-off with clearer direction and less navigation time.
Direct vehicle-to-pedestrian communication and AR overlays improve collision detection and deliver timely alerts to distracted pedestrians.
Cameras and sensors detect pedestrians near turning vehicles, then trigger targeted sound and strobe warnings to cover blind spots.
A wearable safety alert system broadcasts context-based presence signals to nearby AVs, improving detection in edge cases and emergencies.
Projected laser grids and pathway prediction warn pedestrians and drivers earlier during turning, reversing, and articulated vehicle maneuvers.
WLAN-activated waymarkers project directional light fields so users can find a parked vehicle hands-free without complex third-party signaling.
Geographic proximity checks and server-mediated access let users unlock nearby vehicles securely while improving fleet utilization.
Virtual testing and vehicle-use logs assess autonomous feature effectiveness, enabling more accurate risk-based insurance premiums.
Dynamic exterior display regions target crosswalk pedestrians with relevant vehicle intent while reducing confusion for people farther away.
A cross-linked transparent substrate replaces thermoformed translucent films to improve contour accuracy, surface quality, and light-through styling.
An aerial tracker predicts hidden road user movement and warns nearby vehicles before spatial proximity becomes a collision risk.
Location-based siren control reduces or stops emergency vehicle siren sound in right-of-way zones to limit resident disturbance.
Road-projected icon lighting lets autonomous vehicles notify multiple pedestrians at once, confirming detection and reducing uncertainty.
Multi-sensor AI detects traffic hazards around bicycles and issues early alerts to help riders avoid collisions with cars.
Projected crosswalks and stop warnings help school buses alert inattentive drivers and make child crossings visible at flexible stop locations.
A two-stage sound and light alert system detects pedestrians who missed the first warning and improves abnormal vehicle notification near crosswalks.
Stoppage-distance-based notification timing helps autonomous vehicles avoid confusing multiple soon-to-cross pedestrians about whether the car will stop or pass.
Classifying nearby pedestrians by age, movement, and intersection status helps trigger vehicle alerts at safer times with fewer false alarms.