mmWave vs Wi-Fi 3D Scene Reconstruction Simulator

Electrodynamics Lab
FREQ: 60.0 GHz
WAVELENGTH: 5.0 mm
POINTS: 4820
SPATIAL RES: 4.5 mm

60 GHz (mmWave)

8x8 Array (64 Elements)

Drywall Wall R: 0.35
Permittivity (εr): 3.0 Absorption: Low
Human Body Tissue R: 0.70
Permittivity (εr): 45.0 High Attenuation
Metal Chair / Objects R: 0.95
Permittivity (εr): 1.0 (Cond) Specular Refl

3D ELECTRODYNAMICS CANAL
Orbit: Left Click Drag | Pan: Right Click | Transceiver Drag Enabled
Tx Position: X: 0.0m, Y: 2.8m, Z: 0.0m
Emitted Wavefront Specular Ray Reconstructed Voxel
60FPS Real-Time Wave Optics

3D Voxel Reconstruction RADAR BACKSCATTER

VOXEL POINTS
4,820
SPATIAL RES
4.5 mm
SIGNAL SNR
28.4 dB
SURFACE ERROR
< 3.2 mm

Radar Surface Extraction DYNAMIC SCAN
RADAR AZIMUTH MAP

Physical Phenomenon

At 60 GHz (mmWave), the tiny 5 mm wavelength undergoes specular reflection off objects instead of heavy diffraction. The 8x8 phased array synthesizes tight beamforming patterns, producing high-density point clouds that clearly reconstruct human postures and chair contours with sub-centimeter accuracy.

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