Area of research
Electrical and Electronic Engineering · Aerospace Engineering
Research interest
Research interests include Indoor and Outdoor Localization Technologies, Energy Harvesting in Wireless Networks, Advanced MIMO Systems Optimization, and Full-Duplex Wireless Communications.
Multifunctional Metasurface: Simultaneous Beam Steering, Polarization Conversion, and Phase Offset
mmSpoof: Resilient Spoofing of Automotive Millimeter-wave Radars using Reflect Array
P2SLAM: Bearing Based WiFi SLAM for Indoor Robots
Two beams are better than one
12.2 Improving the Range of WiFi Backscatter Via a Passive Retro-Reflective Single-Side-Band-Modulating MIMO Array and Non-Absorbing Termination
Deep learning based wireless localization for indoor navigation
SIGNet: Semantic Instance Aided Unsupervised 3D Geometry Perception
Collaborative Research: NeTS: Medium: EdgeRIC: Empowering Real-time Intelligent Control and Optimization for NextG Cellular Radio Access Networks
Collaborative Research: SII-NRDZ: SweepSpace: Enabling Autonomous Fine-Grained Spatial Spectrum Sensing and Sharing
Collaborative Research: CCRI: New: SpecScape: Enabling a Global Spectrum Observatory through Mobile, Wide-band Spectrum Sensing Kits and a Software Ecosystem
Collaborative Research: CNS Core: Medium: Programmable Computational Antennas for Sensing and Communications
Collaborative Research: CNS Core: Small: Adaptive Smart Surfaces for Wireless Channel Morphing to Enable Full Multiplexing and Multi-user Gains
Collaborative Research: SWIFT: Small: Cross-Layer Interference Management: Bringing Interference Alignment to Reality
SpecEES: Spectrally-Efficient Near-Zero-Power IoT Connectivity with Existing Wi-Fi Infrastructure