Sensys Networks launches AI and wireless traffic detection platform

September 4, 2025

ITS International

MultiSens Intersection provides ‘true sensor fusion in a unified platform’, says manufacturer


Video AI identifies vehicles and vulnerable road users such as motorcycles, bicycles, scooters, and pedestrians across all approach lanes simultaneously (© Vincentstthomas | Dreamstime.com)

Sensys Networks has launched a traffic detection platform that brings video AI and wireless sensor technologies into a single system.

The manufacturer says MultiSens Intersection, which made its debut at ITS World Congress 2025 in Atlanta, combines deep-learning video analytics at the intersection with wireless in-road sensors for advance and midblock detection.

“Traffic engineers have been stuck choosing between technologies that each do one thing well,” said Brian Fuller, president at Sensys Networks. 

“Video AI excels at scene analysis at the intersection but struggles with advance detection. Wireless sensors provide reliable advance detection but don’t provide the visual element. MultiSens Intersection eliminates this compromise through true sensor fusion in a unified platform.”

Key features of MultiSens Intersection

Multimodal Detection: Video AI identifies vehicles and vulnerable road users such as motorcycles, bicycles, scooters, and pedestrians across all approach lanes simultaneously.

Advance Detection without Infrastructure: Wireless sensors provide lane-specific detection without nearby power, communications, or direct line-of-sight – no trenching needed.

Accuracy and Reliability: Video AI filters adverse weather and lighting conditions, while wireless sensors are immune to rain, snow, fog, and glare.

Unified Management: Single software platform eliminates the complexity of managing separate vendor systems, simplifying set-up, diagnostics, and ongoing management.

Scalable and Future-Ready: The system can be deployed with core detection and expanded over time to include advanced analytics, automatic incident detection, and adaptive signal control.