Signal Acquisition
Capture RF reflections and channel changes caused by human presence and micro-motion.
Future Intelligent Wave combines mmWave radar, ambient RF signals, advanced signal processing and Edge AI to extract human presence, motion, vital signs and physiological states without relying on cameras or microphones.
Our perception stack uses radio-frequency sensing to capture subtle human activity and physiological signals, then converts them into actionable machine intelligence through feature extraction, data fusion and AI analysis.
Capture RF reflections and channel changes caused by human presence and micro-motion.
Filter interference, compensate motion and prepare coherent sensing data.
Resolve respiration, heartbeat-related motion and other physiological micro-dynamics.
Transform RF signatures into stable time, frequency and micro-Doppler features.
Combine complementary sensing paths and modalities for stronger confidence and coverage.
Run on-device models for interpretation, classification and context-aware decisions.
FIW is developing a modality-flexible architecture that can use high-resolution radar, ambient wireless signals, or both depending on the environment and application.
High-sensitivity RF sensing for fine motion, ranging and physiological micro-motion — particularly valuable when lighting, privacy or camera placement is challenging.
Extract information from how human activity changes the wireless channel, enabling passive sensing using communication infrastructure as an additional perception source.
FIW’s architecture is designed for edge processing so raw sensing data can be converted locally into compact, meaningful outputs. This enables responsive systems while reducing dependence on cameras, microphones and continuous raw-data transfer.
The same sensing foundation can support different products and research paths across environments where continuous, contactless and privacy-aware human understanding is valuable.
Presence, interaction, motion and physiological context for more human-aware machines.
Occupant and in-cabin sensing for safety, wellness and post-event awareness.
Contactless vital-sign and activity monitoring for assistive and remote-care scenarios.
Ambient intelligence without requiring continuous optical observation.
We are developing and validating our sensing stack with technology, research and application partners.