Professor

Nguyen Van Dinh

Affiliation: VinUniversity, Hanoi, Viet Nam

nguyen.van dinh@vinuni-scopus.fake

Introduction

Dr. Dinh Nguyen is currently an Assistant Professor in Networks and Distributed Systems with the School of Computer Science and Statistics, Trinity College Dublin, Ireland. Prior to this position, he was an Assistant Professor at the College of Engineering and Computer Science, VinUniversity (2022-2025), a Research Associate with the Interdisciplinary Centre for Security, Reliability and Trust (SnT), University of Luxembourg (2019-2022), a Postdoc Researcher and a Lecturer with Soongsil University (2018-2019), a Postdoctoral Visiting Scholar with the University of Technology Sydney, AUS (July-August 2018) and a Ph.D. Visiting Scholar with Queen¿s University Belfast, U.K. (June-July 2015 and August 2016). Dr. Nguyen received the four best conference paper awards, IEEE Communications Letters Exemplary Editor Awards 2019 and 2021, IEEE Open Journal of the Communications Society Exemplary Editor Award 2021 and 2023, IEEE Transaction on Communications Exemplary Reviewer Award 2018 and IEEE GLOBECOM Student Travel Grant Award 2017. He has authored or co-authored some 90 papers published in international journals and conference proceedings. He has served as a reviewer for many top-tier international journals on wireless communications, and has also been a Technical Programme Committee Member for several flag-ship international conferences in the related fields. He is currently a Senior Editor of IEEE COMMUNICATIONS LETTERS, and was an Associate Editor of the IEEE OPEN JOURNAL OF THE COMMUNICATIONS SOCIETY and IEEE SYSTEMS JOURNAL.

Affiliation: VinUniversity, Hanoi, Viet Nam

Research Output

Wireless Power Transfer Meets Semantic Communication for Resource-Constrained IoT Networks: A Joint Transmission Mode Selection and Resource Management Approach

Sang Nguyen Huu, Hai Nguyen Duc, Anh Nguyen Duc Duy, Luong Nguyen Cong, Nguyen Van-Dinh, Gong Shimin, Niyato Dusit, Kim Dong In
  • Channel allocation
  • deep reinforcement learning (DRL)
  • energy harvesting (EH)
  • power control
  • semantic communication (SemCom)

Securing MIMO Wiretap Channel With Learning-Based Friendly Jamming Under Imperfect CSI

Minh Tuan Bui, Nguyen Diep N., Linh Trung Nguyen, Nguyen Van-Dinh, Van Huynh Nguyen, Thai Hoang Dinh, Krunz Marwan, Dutkiewicz Eryk
  • Anti-eavesdropping
  • autoencoder
  • friendly jamming (FJ)
  • Internet of Things (IoT) security
  • multiple-input-multiple-output (MIMO)
  • mutual information
  • mutual information neural estimation (MINE)
  • physical-layer security (PLS)
  • wiretap channel

Performance Analysis and Power Allocation for Massive MIMO ISAC Systems

Nguyen Nhan Thanh, Nguyen Van-Dinh, Nguyen Hieu V., Ngo Hien Quoc, Swindlehurst A. Lee, Juntti Markku
  • Integrated sensing and communications (ISAC)
  • massive MIMO
  • maximum-ratio transmission
  • zero-forcing

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Keyphrases

  • Channel allocation
  • deep reinforcement learning (DRL)
  • energy harvesting (EH)
  • power control
  • semantic communication (SemCom)
  • Anti-eavesdropping
  • autoencoder
  • friendly jamming (FJ)
  • Internet of Things (IoT) security
  • multiple-input-multiple-output (MIMO)
  • mutual information
  • mutual information neural estimation (MINE)
  • physical-layer security (PLS)
  • wiretap channel
  • Integrated sensing and communications (ISAC)
  • massive MIMO
  • maximum-ratio transmission
  • zero-forcing
  • Beamforming
  • hybrid active-passive RIS
  • successive convex approximation
  • trajectory design
  • UAV-enabled communications
  • intelligent resource management
  • Open radio access network
  • reinforcement learning
  • resource sharing
  • traffic steering
  • Attention mechanism
  • convolution neural network
  • dynamic convolution
  • human pose estimation
  • wireless sensing
  • precoding
  • quality of service
  • Reconfigurable intelligent surfaces
  • scheduling
  • smart cities
  • 5G and beyond
  • admission control
  • flexible order
  • integer linear programming
  • Network slicing
  • open radio access network
  • resource allocation
  • slice embedding
  • Federated learning (FL)
  • Internet of Things (IoT)
  • privacy preservation
  • transfer learning (TL)
  • waste classification
  • Digital twin
  • distributed optimization
  • edge computing
  • industrial Internet of Things
  • low latency communications
  • ultra-reliable
  • Cell-free massive MIMO
  • hybrid relay-reflecting intelligent surface
  • reconfigurable intelligent surface
  • spectral efficiency
  • Alternating optimization
  • digital twin
  • industrial Internet-of-Things
  • mobile edge computing (MEC)
  • ultra-reliable and low latency communications (URLLC)

Computer Science

  • Signal Processing

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