Fengyu Wang

Fengyu Wang

University of Maryland

H-index: 11

North America-United States

About Fengyu Wang

Fengyu Wang, With an exceptional h-index of 11 and a recent h-index of 11 (since 2020), a distinguished researcher at University of Maryland, specializes in the field of Wireless sensing, Internet of Things, signal processing, wireless communication, semantic communications.

His recent articles reflect a diverse array of research interests and contributions to the field:

SemHARQ: Semantic-Aware HARQ for Multi-task Semantic Communications

Joint UAV Movement Control and Load Balancing Based On Indirect Control in Air-Ground-Integrated Networks

Two-Dimensional Power Allocation for OTFS-Based High-Mobility Cognitive Radio Networks

Channel-Transferable Semantic Communications for Multi-User OFDM-NOMA Systems

Semantic Communications with Explicit Semantic Base for Image Transmission

Dynamic uav swarm collaboration for multi-targets tracking under malicious jamming: Joint power, path and target association optimization

Codebook Design and Beam Training for Conformal Array-Enabled UAV mmWave Communications With the Airframe Shadowing

Federated Semantic Learning Driven by Information Bottleneck for Task-Oriented Communications

Fengyu Wang Information

University

Position

___

Citations(all)

442

Citations(since 2020)

430

Cited By

37

hIndex(all)

11

hIndex(since 2020)

11

i10Index(all)

13

i10Index(since 2020)

12

Email

University Profile Page

Google Scholar

Fengyu Wang Skills & Research Interests

Wireless sensing

Internet of Things

signal processing

wireless communication

semantic communications

Top articles of Fengyu Wang

SemHARQ: Semantic-Aware HARQ for Multi-task Semantic Communications

arXiv preprint arXiv:2404.08490

2024/4/12

Joint UAV Movement Control and Load Balancing Based On Indirect Control in Air-Ground-Integrated Networks

IEEE Wireless Communications Letters

2024/4/1

Fengyu Wang
Fengyu Wang

H-Index: 4

Wenjun Xu
Wenjun Xu

H-Index: 9

Two-Dimensional Power Allocation for OTFS-Based High-Mobility Cognitive Radio Networks

IEEE Transactions on Network Science and Engineering

2024/1/5

Channel-Transferable Semantic Communications for Multi-User OFDM-NOMA Systems

IEEE Wireless Communications Letters

2023/12/7

Semantic Communications with Explicit Semantic Base for Image Transmission

2023/12/4

Dynamic uav swarm collaboration for multi-targets tracking under malicious jamming: Joint power, path and target association optimization

IEEE Transactions on Vehicular Technology

2023/11/15

Codebook Design and Beam Training for Conformal Array-Enabled UAV mmWave Communications With the Airframe Shadowing

IEEE Wireless Communications Letters

2023/9/20

Federated Semantic Learning Driven by Information Bottleneck for Task-Oriented Communications

IEEE Communications Letters

2023/8/21

Scalable multi-task semantic communication system with feature importance ranking

2023/6/4

Method, apparatus, and system for wireless vital monitoring using high frequency signals

2023/3/16

Semantic communication for the internet of vehicles: A multiuser cooperative approach

IEEE Vehicular Technology Magazine

2023/1/10

SemAudio: Semantic-aware streaming communications for real-time audio transmission

2022/12/4

Method, apparatus, and system for wireless proximity sensing

2022/11/15

A Low-Complexity Analysis of Finite-Length LT Codes Based on Degree Distribution Evolution

2022/11/11

Robust Spectrum Sensing Based on Phase Difference Distribution

IEEE Transactions on Cognitive Communications and Networking

2022/10/12

Semantic communications: A new paradigm for networked intelligence

2022/8/22

Method, apparatus, and system for vital signs monitoring using high frequency wireless signals

2022/8/9

Deep learning compressed sensing-based beamspace channel estimation in mmWave massive MIMO systems

IEEE Wireless Communications Letters

2022/7/5

Prioritized delay optimization for NOMA-based multi-UAV emergency networks

IEEE Transactions on Vehicular Technology

2022/6/21

Linear Equalization Method and Device for OTFS Systems

2022/6/9

See List of Professors in Fengyu Wang University(University of Maryland)

Co-Authors

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