World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
32
Citations
5311
World Ranking
6231
National Ranking
110

Overview

Hung-Yu Wei is affiliated with National Taiwan University in Taiwan. Their research spans across multiple fields within computer science and engineering, with a focus on areas that integrate communication technologies and network systems.

Their main fields of study include:

  • Computer Science
  • Engineering

Within these disciplines, their subfields of study emphasize:

  • Computer Networks and Communications
  • Electrical and Electronic Engineering
  • Computer Vision and Pattern Recognition
  • Artificial Intelligence
  • Media Technology

Hung-Yu Wei's work covers a variety of topics, prominently featuring:

  • Advanced MIMO Systems Optimization
  • IoT and Edge/Fog Computing
  • Millimeter-Wave Propagation and Modeling
  • Telecommunications and Broadcasting Technologies
  • Age of Information Optimization
  • Caching and Content Delivery
  • IoT Networks and Protocols

The scientist has contributed research articles to several frequent publication venues, including:

  • IEEE Access
  • IEEE Transactions on Network and Service Management
  • IEEE Internet of Things Journal
  • IEEE Communications Magazine
  • IEEE Transactions on Vehicular Technology

Among their recent papers are:

  • Management and Orchestration of Edge Computing for IoT: A Comprehensive Survey, 2023, IEEE Internet of Things Journal
  • Decomposable Intelligence on Cloud-Edge IoT Framework for Live Video Analytics, 2020, IEEE Internet of Things Journal
  • A Survey on DRX Mechanism: Device Power Saving From LTE and 5G New Radio to 6G Communication Systems, 2022, IEEE Communications Surveys & Tutorials
  • Risk-Aware Cloud-Edge Computing Framework for Delay-Sensitive Industrial IoTs, 2021, IEEE Transactions on Network and Service Management
  • Collaborative Social-Aware and QoE-Driven Video Caching and Adaptation in Edge Network, 2020, IEEE Transactions on Multimedia

Collaboration is a notable aspect of their research activity, with frequent co-authors including:

  • Kuang-Hsun Lin
  • Yao Chiang
  • He-Hsuan Liu
  • Chih-Yu Wang
  • Tao Zhang

Best Publications

  • 5G New Radio: Waveform, Frame Structure, Multiple Access, and Initial Access

    Shao-Yu Lien;Shin-Lin Shieh;Yenming Huang;Borching Su

  • Interference-aware IEEE 802.16 WiMax mesh networks

    Hung-Yu Wei;S. Ganguly;R. Izmailov;Z.J. Haas

  • Two-hop-relay architecture for next-generation WWAN/WLAN integration

    Hung-yu Wei;R.D. Gitlin

  • Overload control for Machine-Type-Communications in LTE-Advanced system

    Ming-Yuan Cheng;Guan-Yu Lin;Hung-Yu Wei;Alex Chia-Chun Hsu

  • Enabling Low-Latency Applications in Fog-Radio Access Networks

    Yuan-Yao Shih;Wei-Ho Chung;Ai-Chun Pang;Te-Chuan Chiu

  • IEEE 802.11n MAC Enhancement and Performance Evaluation

    Chih-Yu Wang;Hung-Yu Wei

  • 5G Radio Access Network Design with the Fog Paradigm: Confluence of Communications and Computing

    Yu-Jen Ku;Dian-Yu Lin;Chia-Fu Lee;Ping-Jung Hsieh

  • On-Demand Resource-Sharing Mechanism Design in Two-Tier OFDMA Femtocell Networks

    Chun-Han Ko;Hung-Yu Wei

  • Estimation and Adaptation for Bursty LTE Random Access

    Guan-Yu Lin;Shi-Rong Chang;Hung-Yu Wei

  • Low latency handoff for wireless IP QoS with NeighborCasting

    Eunsoo Shim;Hung-yu Wei;Yusun Chang;R.D. Gitlin

  • Network access for M2M/H2H hybrid systems: a game theoretic approach

    Yuan-Chi Pang;Shih-Lung Chao;Guan-Yu Lin;Hung-Yu Wei

  • Incentive scheduling for cooperative relay in WWAN/WLAN two-hop-relay network

    Hung-Yu Wei;R.D. Gitlin

  • Bio-Inspired Proximity Discovery and Synchronization for D2D Communications

    Shih-Lung Chao;Hsin-Ying Lee;Ching-Chun Chou;Hung-Yu Wei

  • Cross-layer Mobile Chord P2P protocol design for VANET

    Che-Liang Liu;Chih-Yu Wang;Hung-Yu Wei

  • DeepSleep: IEEE 802.11 enhancement for energy-harvesting machine-to-machine communications

    Hsiang-Ho Lin;Mei-Ju Shih;Hung-Yu Wei;Rath Vannithamby

  • Task offloading and resource allocation in mobile-edge computing system

    Te-Yi Kan;Yao Chiang;Hung-Yu Wei

  • Enabling Millimeter-Wave 5G Networks for Massive IoT Applications: A Closer Look at the Issues Impacting Millimeter-Waves in Consumer Devices Under the 5G Framework

    Biswa P.S. Sahoo;Ching-Chun Chou;Chung-Wei Weng;Hung-Yu Wei

  • On Admission of VoIP Calls Over Wireless Mesh Network

    Hung-yu Wei;Kyungtae Kim;Anand Kashyap;Samrat Ganguly

  • A Survey on DRX Mechanism: Device Power Saving From LTE and 5G New Radio to 6G Communication Systems

    Unknown

  • Millimeter-Wave Multi-Hop Wireless Backhauling for 5G Cellular Networks

    B. P. S. Sahoo;Chun-Han Yao;Hung-Yu Wei

  • Performance of IP Micro-Mobility Management Schemes using Host Based Routing

    K. Daniel Wong;Hung-Yu Wei;Ashutosh Dutta;Kenneth Young

  • Enabling Millimeter-Wave 5G Networks for Massive IoT Applications.

    Biswa P. S. Sahoo;Ching-Chun Chou;Chung-Wei Weng;Hung-Yu Wei

Frequent Co-Authors

Richard D. Gitlin
Richard D. Gitlin University of South Florida
Mehdi Bennis
Mehdi Bennis University of Oulu
Ashutosh Dutta
Ashutosh Dutta AT&T (United States)
Zygmunt J. Haas
Zygmunt J. Haas The University of Texas at Dallas
Winston K. G. Seah
Winston K. G. Seah Victoria University of Wellington

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