Passive RF Biometric Intelligence.
Zero Wearables. Zero Lenses.
CuraWave™ harnesses ambient radio-frequency multipath reflections to reconstruct human biomechanics in real-time. By transforming existing Wi-Fi signals into a medical-grade spatial canopy, we deliver continuous fall detection and vital signs without human burden.
The 4-Layer Contactless Biometric Stack
How CuraWave™ converts raw electromagnetic sub-carrier perturbations into verified, sub-second telecare emergency dispatches.
Ambient RF Signal Conditioning
Extracts high-resolution Channel State Information (CSI) across 52 sub-carriers in the 2.4 GHz and 5 GHz ISM spectrums. Multi-path reflections bounce off static walls and dynamic human tissue, creating a unique electromagnetic disturbance pattern for every physical movement.
Dynamic Spatial Fresnel Filtering
Eliminates ambient background noise from pets, ceiling fans, moving curtains, and fluctuating household appliances at the physical layer.
Micro-Doppler Feature Extraction
Converts complex phase shifts and amplitude attenuations into high-dimensional Doppler spectrograms. Quantifies human torso velocity, rotational velocity vectors, and micro-motion frequency signatures with millimeter-level displacement precision.
Torso Velocity & Altitude Trajectories
Distinguishes intentional rapid sitting or bed diving from an involuntary loss of postural balance leading to floor impact.
Edge Biometric AI Classification
Proprietary lightweight neural temporal networks execute directly on local CuraWave™ Edge AI nodes. Classifies Activities of Daily Living (ADLs) versus acute fall signatures in under 80 milliseconds without transmitting raw radio data to external clouds.
Autonomous Local Edge Inference
Inference remains 100% operational during broadband broadband outages. Zero clinical downtime during ISP service interruptions.
BS 8521-2 Telecare Dispatch
Instantly converts verified fall events into standardized digital telecare alarm frames. Dispatches native IP signals via BS 8521-2 SCAIP and CENELEC EN 50134-9 to Alarm Receiving Centres (ARCs), NHS Virtual Ward consoles, or emergency caregiver mobile apps.
Sub-1.2s Total Alert Latency
From initial floor contact to verified ARC reception in under 1.2 seconds—eliminating fatal long-lie delays.
Live CSI Doppler Spectrogram Simulator
Observe in real-time how CuraWave's ambient sensing algorithms distinguish normal activities of daily living from sudden clinical falls and nocturnal respiratory micro-motion.
Multi-Occupant Disambiguation in Real-World Homes
A major limitation of first-generation radar and sonar pods is their vulnerability to household clutter and multi-person environments. CuraWave's patented spatial cluster tracking isolates individual multipath reflections based on distinct body mass Fresnel centroids and respiratory frequency signatures.
Multi-Node Triangulation
Synchronized dual-node geometry establishes continuous 3D coordinate tracking across adjacent bedrooms and en-suite bathrooms.
Dynamic Pet Rejection
Sub-carrier attenuation patterns filter out domestic pets (< 25 kg) based on body mass signature and kinematic acceleration profiles.
100% Dignity Guarantee
Unlike optical systems, CuraWave™ never records images, silhouettes, or audio. Your residents maintain complete visual privacy in their most vulnerable moments, including bathrooms and private quarters.
View Clinical Safety CaseIncumbent Teardown: How CuraWave™ Compares
An empirical comparison between CuraWave's ambient RF canopy and the incumbent telecare and optical systems on the market today.
| Evaluation Metric | CuraWave™ Health | Legacy 869MHz Pendant (Tunstall) | Optical Camera (Oxehealth) |
|---|---|---|---|
| Resident Adherence Burden Compliance required by vulnerable user | 100% Passive Canopy | < 20% (Night / Shower Gap) | Passive (Requires In-Room) |
| Privacy & Bathroom Safeguarding Coverage in en-suites & private rooms | 100% Private (Zero Lenses) | Zero Camera, but Unworn | Prohibited in Bathrooms |
| Slow Bed Slump & Faint Detection Detection of non-impact postural falls | Altitude & Respiration Vector | Missed (Below 1.8G Shock) | Limited by Occlusion |
| Sub-1.2s Alert Latency Time from impact to ARC alarm dispatch | < 1.2s (Local Edge AI) | 10s–30s Manual Button Press | 15s–60s Cloud Buffer |
| 2027 Analogue PSTN Switchover Compatibility with all-IP telecom networks | Native BS 8521-2 SCAIP | Requires Analogue Dialler Upgrade | IP Network Required |
| Mains Power Failure Resilience Continuous operation during blackouts | 8–10h Integrated UPS | Coin Cell Battery | Shuts Down with PoE/Mains |