SaverOne
SaverOne’s mobile RF fingerprint analysis enhances ADAS performance by detecting VRUs in non-line-of-sight conditions

About Us
Founded in 2014 with a mission to make roads safer for drivers, passengers, and pedestrians alike, SaverOne develops cellular network-based technological solutions for reducing road accidents.
Relevant Challenges
Passenger Oriented
SaverOne’s RF-based ADAS sensor is different. It detects the presence, speed, and movement direction of vulnerable road users (VRUs), including pedestrians and cyclists, by analyzing nearby mobile signal activity. This gives it the unique ability to “see” through obstructions, such as buildings or parked vehicles, and function reliably in adverse conditions where visual sensors fail. The system continuously feeds location, velocity, and trajectory data into the vehicle’s central processing system, enabling better-informed safety decisions. Fully integrated, always on, and designed with real-world complexity in mind, this technology adds a crucial layer of intelligence and redundancy to any ADAS suite.
Vehicle Oriented
SaverOne’s RF-based ADAS sensor is different. It detects the presence, speed, and movement direction of vulnerable road users (VRUs), including pedestrians and cyclists, by analyzing nearby mobile signal activity. This gives it the unique ability to “see” through obstructions, such as buildings or parked vehicles, and function reliably in adverse conditions where visual sensors fail. The system continuously feeds location, velocity, and trajectory data into the vehicle’s central processing system, enabling better-informed safety decisions. Fully integrated, always on, and designed with real-world complexity in mind, this technology adds a crucial layer of intelligence and redundancy to any ADAS suite.
Urban Spaces
SaverOne’s RF-based ADAS sensor is different. It detects the presence, speed, and movement direction of vulnerable road users (VRUs), including pedestrians and cyclists, by analyzing nearby mobile signal activity. This gives it the unique ability to “see” through obstructions, such as buildings or parked vehicles, and function reliably in adverse conditions where visual sensors fail. The system continuously feeds location, velocity, and trajectory data into the vehicle’s central processing system, enabling better-informed safety decisions. Fully integrated, always on, and designed with real-world complexity in mind, this technology adds a crucial layer of intelligence and redundancy to any ADAS suite.