Flexible MIMO Antenna System for Next-Gen mm-Wave IoT
Design and full-wave electromagnetic simulation of a flexible multi-input multi-output (MIMO) antenna array operating at millimeter-wave frequencies for smart wearable and IoT devices.
Electrical Engineering Undergraduate
Electrical Engineering undergraduate deeply fascinated by electromagnetics. Exploring RF systems, antenna design, wireless networks, and computational engineering. Building things, understanding physical fields, and documenting notes along the way.
Broad areas of interest and exploration in high-frequency electromagnetics, antenna architectures, and intelligent systems.
High-frequency devices, front-ends, and wave propagation.
Phased array beamforming, beam steering, and antenna design.
6G, satellite communications, non-terrestrial networks, and radar.
RCS reduction, stealth techniques, RAM, scattering, and shielding.
ML-assisted engineering, surrogate modeling, and computational optimization.
Design and full-wave electromagnetic simulation of a flexible multi-input multi-output (MIMO) antenna array operating at millimeter-wave frequencies for smart wearable and IoT devices.
Low-level 802.11 MAC frame analysis, wireless packet sniffing, and localized security auditing hardware built using ESP32 dual-core microcontrollers.
"The shorter you make the units to measure life, the shorter time you get to live the life... Do not die a survivor. Do die a living soul."
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