Frontier · Frontier
Concealed Large-Metal Anomaly Screening
A hallway that notices someone carrying a large hidden metal object.
Plausible physics, early work — shown honestly as an experiment.
How it works
Metal reflects signal far more strongly than a human body ever can. A big concealed object — a toolbox, a machete-class blade, stolen copper — adds a bright extra echo that travels along with the person carrying it. The system flags the glint and where it went; it does not name the object.
In the physics: Metal is a near-perfect scatterer: a body-carried metal object creates a new, strong, polarization- and angle-dependent specular multipath component that a purely dielectric human body cannot produce. In the CIR this appears as an anomalously strong extra tap that moves rigidly with the tracked person, with scattering cross-section far above tissue.
See it work
This is real pipeline output for Frontier, replayed. The exact reading depends on your room.
Go deeper
How the field becomes an answer
How we prove it
Own-hardware corridor rig: N subjects walking with/without concealed metal plates of graded area (0.005-0.1 m^2), report ROC vs object size; sanity-check tap-detection machinery on OPERAnet/WiMANS walking traces.
Who it is for
'Camera-free anomaly screening at every doorway' — loss-prevention and campus-security teams get a metal-object tripwire for the price of a WiFi node, with zero biometric data collected.
The matching solution
Complete first-room estimateField Lab Kit6 nodes · ~$320 parts · 120 min Request kit, subscribe, or set up →Compatible DIY hardware options
60 min · intermediate
240 min · installer