Area of research
Electrical and Electronic Engineering · Computer Networks and Communications
Research interest
Research focused on Cognitive radio and Fading, with related work in Multipath propagation, Physical layer, Beamforming. Notable publications include 'Molecular communications: channel model and physical layer techniques', 'Efficient Beamforming Training for 60-GHz Millimeter-Wave Communications: A Novel Numerical Optimization Framework', and 'Energy Detection Based Spectrum Sensing for Cognitive Radios Over Time-Frequency Doubly Selective Fading Channels'.
Rapid Identification of Dendrobium Species Using Near-Infrared Hyperspectral Imaging Technology
Physical-Layer Counterattack Strategies for the Internet of Bio-Nano Things with Molecular Communication
Adversarial Game Against Hybrid Attacks in UAV Communications With Partial Information
Learning-Based Spectrum Sharing and Spatial Reuse in mm-Wave Ultradense Networks
Molecular communications: channel model and physical layer techniques
Eavesdropper Localization in Random Walk Channels
Deep Sensing for Space-Time Doubly Selective Channels: When a Primary User Is Mobile and the Channel Is Flat Rayleigh Fading
Deep Sensing for Future Spectrum and Location Awareness 5G Communications
A Bayesian Approach for Nonlinear Equalization and Signal Detection in Millimeter-Wave Communications
Deep Sensing for Next-Generation Dynamic Spectrum Sharing: More Than Detecting the Occupancy State of Primary Spectrum
Energy Detection Based Spectrum Sensing for Cognitive Radios Over Time-Frequency Doubly Selective Fading Channels
Spectrum Sensing for Cognitive Radios in Time-Variant Flat-Fading Channels: A Joint Estimation Approach
Efficient and Robust Cluster Identification for Ultra-Wideband Propagations Inspired by Biological Ant Colony Clustering
Efficient Beamforming Training for 60-GHz Millimeter-Wave Communications: A Novel Numerical Optimization Framework