Area of research
Electrical and Electronic Engineering · Aerospace Engineering
Research interest
Research interests include Computer science, Channel (broadcasting), Multipath propagation, Wireless, MIMO, and Path loss.
Channel Measurements and Modeling for Dynamic Vehicular ISAC Scenarios at 28 GHz
Channel Spreading Function-Inspired Channel Transfer Function Estimation for OFDM Systems With High Mobility
Non-Stationarity Characteristics in Dynamic Vehicular ISAC Channels at 28 GHz
Multiscale dynamics analysis of lumbar vertebral cortical bone based on the Abaqus submodel finite element method
Measurement-Based Nonstationary Markov Tapped Delay Line Channel Model for 5G-Railways
A Cluster-Based Statistical Channel Model for Integrated Sensing and Communication Channels
Narrowband Channel Measurements and Statistical Characterization in Subway Tunnels at 1.8 and 5.8 GHz
Channel Path Loss Prediction Using Satellite Images: A Deep Learning Approach
AI-Empowered RIS-Assisted Networks: CV-Enabled RIS Selection and DNN-Enabled Transmission
Measurement and Characterization of Vehicle-to-Vehicle Channels in Vegetated Environment
Path Loss Prediction Based on Deep Neural Networks Considering Fresnel Zone
Measurement-Based Channel Characterization and Modeling for 5G-Railways at 2.16 GHz
Characterization of Wireless Channel Semantics: A New Paradigm
Dynamic V2V Channel Measurement and Modeling at Street Intersection Scenarios
Generative adversarial networks based digital twin channel modeling for intelligent communication networks
AI-Enabled Data-Driven Channel Modeling for Future Communications
A 3D Geometry-Based Reconfigurable Intelligent Surfaces-Assisted mmWave Channel Model for High-Speed Train Communications
CNN-Based Path Loss Prediction With Enhanced Satellite Images
A Shared Multipath Components Evolution Model for Integrated Sensing and Communication Channels
Radio communication scenarios in 5G-railways
5G for Railways: Next Generation Railway Dedicated Communications
A General Channel Model for Integrated Sensing and Communication Scenarios
Modeling and Analysis of MIMO Multipath Channels With Aerial Intelligent Reflecting Surface
Measurements and Modeling of Large-Scale Channel Characteristics in Subway Tunnels at 1.8 and 5.8 GHz
Circulating NAD+ Metabolism-Derived Genes Unveils Prognostic and Peripheral Immune Infiltration in Amyotrophic Lateral Sclerosis
Multi-scenario millimeter wave wireless channel measurements and sparsity analysis
Artificial intelligence enabled radio propagation for communications-Part II: Scenario identification and channel modeling
Wireless Channel Sparsity: Measurement, Analysis, and Exploitation in Estimation
A Non-Stationary Geometry-Based MIMO Channel Model for Millimeter-Wave UAV Networks
Machine-Learning-Based Fast Angle-of-Arrival Recognition for Vehicular Communications