游昌盛(Changsheng You)个人主页信息归档

游昌盛(Changsheng You)个人主页信息归档

抓取日期:2026-05-26
原主页:https://sites.google.com/view/changshengy/homepage
参考设计主页:https://dingzhuwen.github.io/

说明:本文件根据游昌盛 Google Sites 主页的公开页面整理,覆盖 Homepage、Publication、People、Awards、Services、Teaching 六个栏目。原网页中少量英文空格、拼写或编号异常在此尽量保留其原意并做了轻微排版规范化,便于后续制作 GitHub Pages 版本。

页面结构

  • Homepage: https://sites.google.com/view/changshengy/homepage
  • Publication: https://sites.google.com/view/changshengy/homepage/publication
  • People: https://sites.google.com/view/changshengy/homepage/people
  • Awards: https://sites.google.com/view/changshengy/homepage/awards
  • Services: https://sites.google.com/view/changshengy/homepage/services
  • Teaching: https://sites.google.com/view/changshengy/homepage/teaching

基本信息

  • 姓名:Dr. Changsheng You
  • 职位:Assistant Professor
  • 单位:Department of Electronic and Electrical Engineering, Southern University of Science and Technology
  • 邮箱:youcs@sustech.edu.cn
  • 办公室:Room 708, South Tower, College of Engineering, 1088 Xueyuan Avenue, Nanshan District, Shenzhen 518055
  • 头像源链接(Googleusercontent):https://lh3.googleusercontent.com/sitesv/AA5AbUDxId7p6S69atkPYXteNKANQO-bFlZNpPEJ5Uf4r_k5vJ_2RgLhCBGW2Lmm45I1DgpK2odx2OxqDGwSqMvG_zMX2lJwlYw5CcYWUFsbUlp4wct5TheXbHpaEel-lvY6xiirMbAU3-8rwMqUR_FGVSi7Jpiy0XJdeA0s1ahmbas_5mDgFLJAFFl7eGz3c7kdMJi8i5XOoSmwb8MSTdJvNzxsdGs9cVnj6dd9Uh0%3Dw1280

About Me

I am now an Assistant Professor with Southern University of Science and Technology (SUSTech). I obtained my Ph.D. degree from The University of Hong Kong in 2018, and the B.Eng. degree from University of Science and Technology of China in 2014. I was a postdoc research fellow with National University of Singapore in 2018-2021.

Research Interests

  • Wireless communication and networking
  • Mobile edge computing
  • UAV communications
  • Intelligent reflecting surface

Vacancy

We are actively looking for students who are self-motivated and have a strong background in mathematics and wireless communications. We also welcome applications of Research Assistant Professors, Post-Doctoral Researchers, and Visiting Scholars. Interested candidates please send your resume and three representative publications to youcs@sustech.edu.cn.

News

  1. I am honor to be listed as Clarivate Highly Cited Researcher in 2024 and 2025.
  2. Nov. 2024, I am honor to receive IEEE ComSoc Asia-Pacific Best Young Research Award for contributions to Intelligent Reflecting Surface Empowered Wireless Communication and Sensing, 2024.
  3. Nov. 2024, we received IEEE WCSP Best Paper Award for paper “Channel Estimation for XL-IRS Assisted Wireless Systems with Double-sided Visibility Regions”, 2024.
  4. April 2023: Our paper “Intelligent Reflecting Surface-Aided Wireless Communications: A Tutorial” received IEEE ComSoc Best Tutorial Paper Award in 2023.
  5. Feb. 2022: I am honor to receive 2022 “AI 2000 Most Influential Scholar Award Honorable Mention” in the field of Internet of Things.
  6. Oct. 2021: I join the Department of EEE of Southern University of Science and Technology as an Assistant Professor.
  7. May 2021: I am honor to receive IEEE Best Survey Paper Award.

Call For Papers

  1. IEEE ICC 2023 Workshop on “Edge Learning for 5G Mobile Networks and Beyond”.
  2. IEEE GLOBECOM 2022 Workshop on “Edge Learning over 5G Mobile Networks and Beyond” (Deadline: 15 July 2022).
  3. IEEE SECON 2022 Workshop on “Reconfigurable Holographic and Intelligent Surfaces for Green 6G Sensing, Communication and Networking” (Deadline: 30 June 2022).
  4. IEEE Transactions on Green Communications and Networking (TGCN) Special Issue on “Intelligent Reflecting Surface for Green Communication, Computing, and Sensing” (Deadline: 24 September 2021).

People

PI

  • Dr. Changsheng You

Postdoc

  • Dr. Mingjiang Wu
  • Dr. Sai Wang

Ph.D Students

  • Ms. Tianyu Liu (Fall 2022)
  • Mr. Zeyang Hu (Fall 2022)
  • Mr. Jiapeng Li (Fall 2023)
  • Mr. Jiayi Cong (Fall 2023)
  • Mr. Chao Zhou (Fall 2024)
  • Mr. Guoliang Cheng (Fall 2024)
  • Mr. Hongqiang Cheng (Fall 2025)
  • Mr. Wenyi Zhang (Fall 2026)
  • Mr. Yingkai Kang (Fall 2026)
  • Mr. Xiang Zhu (Fall 2026)

Master Students

  • Mr. Xun Wu (Fall 2022, with Bi Yadi)
  • Mr. Bowen Gong (Fall 2022, with Huawei)
  • Mr. Xun Zhang (Fall 2023)
  • Mr. Liujia Yao (Fall 2024)
  • Mr. Songze Cheng (Fall 2024)
  • Ms. Mengqi Ma (Fall 2024)
  • Mr. Chenran Kou (Fall 2024)
  • Mr. Wei Zhen (2025)
  • Mr. Jiaqian Li (2026)

Undergraduate Students

  • Ms. Linyang Liu
  • Mr. Liujia Yao
  • Mr. Songze Cheng
  • Mr. Haodong Zhang
  • Mr. Haobin Sun
  • Mr. Zihan Liu
  • Mr. Zijie Hu

Visiting Students

  • Mr. Yunpu Zhang, Master, Central South University
  • Mr. Xinhao Li, Master, University College of London
  • Ms. Yunli Li, Ph.D, City University of Hong Kong
  • Mr. Qiao Lan, Ph.D, The University of Hong Kong
  • Mr. You Zhou, Ph.D, The University of Hong Kong
  • Mr. Wanli Ni, Ph.D., Beijing University of Posts and Telecommunications
  • Mr. Wen Wang, Ph.D., Beijing University of Posts and Telecommunications
  • Mr. Hao Wei, Ph.D., Beijing University of Posts and Telecommunications
  • Mr. Chenyu Wu, Ph.D., Harbin Institute of Technology
  • Mr. Guoyu Li, Ph.D., Harbin Institute of Technology
  • Mr. Chong Zhou, Ph.D., Harbin Institute of Technology
  • Mr. Tao Wang, Ph.D., Beijing University of Posts and Telecommunications

Selected Awards

  • Clarivate Highly Cited Researcher 2024
  • IEEE Communications Society Leonard G. Abraham Prize, 2025
  • IEEE ComSoc Asia-Pacific Best Young Research Award for contributions to Intelligent Reflecting Surface Empowered Wireless Communication and Sensing, 2024
  • IEEE ComSoc Best Tutorial Paper Award for paper “Intelligent Reflecting Surface-Aided Wireless Communications: A Tutorial”, 2023
  • IEEE ComSoc Best Survey Paper Award for paper “A Survey on Mobile Edge Computing: The Communication Perspective”, 2021
  • IEEE ComSoc Asia-Pacific Outstanding Paper Award for paper “Energy-Efficient Resource Allocation for Mobile-Edge Computation Offloading”, 2019
  • Li Ka Shing Prize (the Best Ph.D. Thesis Award, only 4 Ph.D. awardees each year in HKU), 2017-2018
  • Highly Cited Chinese Scholars, 2022-2024
  • World’s Top 2% Scientist by Stanford University, 2020-2022
  • AI 2000 Most Influential Scholar Award Honorable Mention (in the field of Internet of Things), 2022, 2023
  • Young Elite Scientist of China Association for Science and Technology, 2022
  • IEEE WCSP Best Paper Award for paper “Channel Estimation for XL-IRS Assisted Wireless Systems with Double-sided Visibility Regions”, 2024
  • IEEE ICC Best Paper Award on workshop of “Task-oriented and generative communication for 6G”, 2024
  • Exemplary Editor of IEEE Communications Letters, 2021
  • Exemplary Reviewer of IEEE Wireless Communications Letters, 2020
  • Exemplary Reviewer of IEEE Transactions on Communications, 2019
  • Exemplary Reviewer of IEEE Transactions on Wireless Communications, 2018
  • Outstanding Teaching Assistant Award in Dep. EEE of HKU, 2015-2017
  • HKU Postgraduate Scholarship, 2014-2018

Services

Editor

  • IEEE Transactions on Wireless Communications (TWC)
  • IEEE Transactions on Mobile Computing (TMC)
  • IEEE Communications Letters (CL)
  • IEEE Transactions on Green Communications and Networking (TGCN)
  • IEEE Open Journal of the Communications Society (OJ-COMS)

Lead Guest Editor

  • IEEE JSAC Special Issue on “Next Generation Advanced Transceiver Technologies”
  • IEEE Transactions on Green Communications and Networking, Special Issue on “Intelligent Reflecting Surface for Green Communication, Computing, and Sensing”

Professional Roles

  • IEEE ComSoc SPCC SIG on Near Field Communications for Next Generation Mobile Networks, Vice-chair
  • IEEE ComSoc TCGCC SIG on Green Computing and Data Processing, Vice-chair

Workshop Co-chairs

  • IEEE ICC 2024 Workshop on “Edge Learning for 5G Mobile Networks and Beyond”
  • IEEE GLOBECOM 2023 Workshop on “Edge Learning for 5G Mobile Networks and Beyond”
  • IEEE PIMRC 2023 Workshop on “Edge Learning for 5G Mobile Networks and Beyond”
  • IEEE ICC 2023 Workshop on “Edge Learning for 5G Mobile Networks and Beyond”
  • IEEE GLOBECOM 2022 Workshop on “Edge Learning over 5G Mobile Networks and Beyond”
  • IEEE SECON 2022 Workshop on “Reconfigurable Holographic and Intelligent Surfaces for Green 6G Sensing, Communication and Networking”

TPC Members

  • IEEE Globecom 2022-2019
  • IEEE ICC 2022-2019
  • IEEE VTC 2019
  • IEEE VTC 2018

Technical Reviews (Selected)

  • IEEE Journal on Selected Areas in Communications
  • IEEE Transactions on Signal Processing
  • IEEE Wireless Communications Magazine
  • IEEE Communications Magazine
  • IEEE Transactions on Wireless Communications
  • IEEE Transactions on Communications
  • IEEE Internet of Things Journal
  • IEEE Transactions on Mobile Computing
  • IEEE Transactions on Vehicular Technology
  • IEEE Access
  • IEEE Communications Letters
  • IEEE Wireless Communications Letters

Teaching

  • 2022 Spring, EEE5028, “Fundamentals of Wireless Communications”

Publications

Book Chapter

  1. C. You, Y. Mao, J. Zhang, and K. Huang, “Energy-Efficient Offloading for Mobile Edge Computing”, in Wiley 5G Ref, 2019.

Journal Article

Note: * indicates corresponding author.

AI and Wireless Communications

  1. J. Li, C. You*, G. Cheng, H. Sun, C. Zhou, L. Dai, “Near-field Beam Training under Multi-path Channels: A Hybrid Learning-and-Optimization Approach”, submitted to IEEE for possible publication.
  2. C. Kou, C. You*, M. Wu, D. Wen, Z. Zhang, C. Xing, “BeamVLM for Low-altitude Economy: Generative Beam Prediction via Vision-language Models”, submitted to IEEE for possible publication.
  3. L. Yao, C. You*, C. Zhou, J. Xu, Y. Gong, and C. Xing, “Deep Learning-based Generative CSI Feedback: Predict, Encode, and Feedback”, submitted to IEEE for possible publication.
  4. S. Xie, D. Wen, C. You, Q. Chen, M. Bennis, K. Huang, “FedLoDrop: Federated LoRA with Dropout for Generalized LLM Fine-tuning”, accepted to IEEE J. Sel. Areas Commun.

Near-field Communications: Survey & Tutorial

  1. H. Lu, Y. Zeng, C. You, Y. Han, J. Zhang, Z. Wang, Z. Dong, S. Jin, C. Wang, T. Jiang, X. You, R. Zhang, “A Tutorial on Near-Field XL-MIMO Communications Towards 6G”, IEEE Communications Surveys and Tutorials, vol. 26, no. 4, pp. 2213-2257, Fourthquarter, 2024. (ESI Highly Cited Paper, ESI Hot Paper)
  2. C. You, Y. Cai*, Y. Liu, M. D. Renzo, T. M. Duman, A. Yener, A. L. Swindlehurst, “Next Generation Advanced Transceiver Technologies for 6G and beyond”, IEEE J. Sel. Areas Commun., vol. 43, no. 3, pp. 582-627, Mar. 2025. (ESI Highly Cited Paper, ESI Hot Paper)
  3. C. You*, Y. Zhang, C. Wu, Y. Zeng, B. Zheng, L. Chen, L. Dai, and A. L. Swindlehurst, “Near-Field Beam Management for Extremely Large-Scale Array Communications”, submitted to IEEE for possible publication.
  4. J. Cong, C. You*, J. Li, L. Chen, B. Zheng, Y. Liu, W. Wu, Y. Gong, S. Jin, and R. Zhang, “Near-field Integrated Sensing and Communication: Opportunities and Challenges”, IEEE Wireless Commun., vol. 31, no. 6, pp. 162-169, Dec. 2024. (Popular article in IEEE WCM)
  5. Q. Dai, Y. Zeng, H. Wang, C. You, et al., “A Tutorial on MIMO-OFDM ISAC: From Far-Field to Near-Field”, accepted to IEEE Communications Surveys and Tutorials, 2026.
  6. Z. Ding, J. Zhang, C. You, P. Tang, H. Xing, Z. Yuan, J. Meng, and G. Liu, “Far-Field vs. Near-Field Propagation Channels: Key Differences and Impact on 6G XL-MIMO Performance Evaluation”, China Communications, 2025.

Near-field Communications: Beam Training and Channel Estimation

  1. Y. Zhang, X. Wu, and C. You*, “Fast Near-Field Beam Training for Extremely Large-Scale Array”, IEEE Wireless Commun. Lett., vol. 11, no. 12, pp. 2625-2629, Dec. 2022. (ESI Highly Cited Paper, Popular article in IEEE WCL, code)
  2. X. Wu, C. You*, J. Li, and Y. Zhang, “Near-Field Beam Training: Joint Angle and Range Estimation with DFT Codebook”, IEEE Trans. Wireless Commun., vol. 23, no. 9, pp. 11890-11903, Sep. 2024.
  3. C. Wu, C. You*, Y. Liu, L. Chen, and S. Shi, “Two-Stage Hierarchical Beam Training for Near-Field Communications”, IEEE Trans. Veh. Technol., vol. 73, no. 2, pp. 2032-2044, Feb. 2024. (ESI Highly Cited Paper, Popular article in IEEE TVT)
  4. T. Wang, C. You, F. Zhou, and C. Yin, “Base Station Beamforming Design in Near-field XL-IRS Beam Training”, IEEE Commun. Lett., vol. 28, no. 4, pp. 932-936, Apr. 2024.
  5. L. Liu, C. You*, Y. Zhang, and T. Liu, “Near-field Beam Training for XL-array Communications with Side Angle Information”, IEEE Commun. Lett., vol. 28, no. 9, pp. 2201-2205, Sep. 2024.
  6. L. Yao, C. You*, Z. Huang, C. Zhou, Z. Yang, X. Li, “Codebook Design for Limited Feedback in Near-Field XL-MIMO Systems”, accepted to IEEE Trans. Commun.
  7. T. Wang, C. You, and C. Yin, “Beam-Steering Aided Hierarchical Codebook for Near-Field Beam Training”, accepted to IEEE Open J. Commun. Society.
  8. X. Shi, J. Wang, X. Wang, C. You, and J. Song, “Double-sided XL-MIMO: Beamfocusing Codeword Selection and Channel Estimation”, IEEE Trans. Commun., vol. 73, no. 5, pp. 3441-3455, May 2025.
  9. Z. Ding, J. Zhang, Z. Yuan, P. Tang, C. You, L. Tian, K. Chen, and G. Liu, “Low-Dimensional Near-Field Codebook Design for Extremely Large-Scale MIMO Systems with Uniform Circular Arrays”, IEEE Trans. Veh. Technol., vol. 74, no. 10, pp. 16511-16515, Oct. 2025.

Near-field Communications: Mixed Near- and Far-field Communication and Sensing

  1. Y. Zhang, and C. You*, “SWIPT in Mixed Near- and Far-Field Channels: Joint Beam Scheduling and Power Allocation”, IEEE J. Sel. Areas Commun., vol. 42, no. 6, pp. 1583-1597, June 2024. (Popular article in IEEE JSAC)
  2. Y. Zhang, C. You*, L. Chen, and B. Zheng, “Mixed Near- and Far-Field Communications for Extremely Large-Scale Array: An Interference Perspective”, IEEE Commun. Lett., vol. 27, no. 9, pp. 2496-2500, Sep. 2023. (Popular article in IEEE CL)
  3. C. Zhou, C. You*, C. Zhou, H. Cheng, and S. Shi, “Mixed Near-field and Far-field Target Localization for Low-altitude Economy”, submitted to IEEE for possible publication.
  4. T. Liu, C. You*, C. Zhou, Y. Zhang, S. Gong, H. Liu, and G. Zhang, “Physical-Layer Security in Mixed Near-Field and Far-Field Communication Systems”, accepted to IEEE Trans. Cogn. Commun. Netw.
  5. C. Zhou, C. You*, C. Zhou, H. Lin, and Y. Gong, “MA-enhanced Mixed Near-field and Far-field Covert Communications”, submitted to IEEE for possible accepted to IEEE Trans. Wireless Commun.
  6. Y. Zhang, C. You*, R. Zhang, B. Zheng, H. C. So, D. Niyato, T. Q. S. Quek, “Rotatable Antenna Enabled Multi-Cell Mixed Near-Field and Far-Field Communications”, accepted to IEEE Trans. Wireless Commun.
  7. T. Liu, C. You*, C. Zhou, M. Wu, M. M. Zhao, Z. Wang, “Mitigating Mixed-field Interference in Near-field and Far-field Communications: An Antenna Selection Approach”, submitted to IEEE for possible publication.
  8. Y. Yi, G. Zhang, M. Cui, C. You, and Q. Wu, “AN-Aided Secure Beamforming for ELAA-SWIPT in Mixed Near-and Far-Field”, accepted to IEEE Wireless Commun. Lett.

Near-field Communications: Sparse Arrays for Near-field Communications

  1. C. Zhou, C. You*, H. Zhang, L. Chen, S. Shi, “Sparse Array Enabled Near-Field Communications: Beam Pattern Analysis and Hybrid Beamforming Design”, accepted to IEEE Trans. Wireless Commun.
  2. C. Zhou, C. You, Z. Huang, S. Shi, Y. Gong, C. B. Chae, K. Huang, “Multi-beam Training for Near-field Communications in High-frequency Bands: A Sparse Array Perspective”, accepted to IEEE Trans. Wireless Commun.
  3. C. Zhou, C. Wu, C. You, J. Zhou, and S. Shi, “Near-field Beam Training with Sparse DFT Codebook”, IEEE Trans. Commun., vol. 73, no. 6, pp. 4394-4408, June 2025.
  4. C. Zhou, C. You, S. Shi, J. Zhou, and C. Wu, “Super-resolution Wideband Beam Training for Near-field Communications with Ultra-low Overhead”, IEEE Internet of Things Journal, vol. 12, no. 14, pp. 28793-28808, July 2025.

Near-field Communications: Beamforming Design and Performance Analysis

  1. G. Li, C. You*, G. Shang, and S. Wu, “Near-field Communications with Extremely Large-Scale Uniform Arc Arrays: Channel Modelling and Performance Analysis”, IEEE Wireless Commun. Lett., vol. 14, no. 4, pp. 1009-1013, Apr. 2025.
  2. H. Zhang, C. You*, and C. Zhou, “Near-field Beam-focusing Pattern under Discrete Phase Shifters”, accepted to IEEE Trans. Wireless Commun.
  3. Y. Zhang, Y. Fang, C. You*, Y. A. Zhang, and H. C. So, “Performance Analysis and Low-Complexity Beamforming Design for Near-Field Physical Layer Security”, accepted to IEEE Trans. Commun.
  4. C. Zhou, C. You*, C. Zhou, C. Xing, and J. Zhang, “Near-field Physical Layer Security: Robust Beamforming under Location Uncertainty”, accepted to IEEE Trans. Wireless Commun.
  5. M. Wu, C. You*, and X. Lei, “Beam-focusing Analysis for Modular XL-arrays: Effect of Time Synchronization Errors”, submitted to IEEE for possible publication.
  6. B. Qin, F. Zhou, W. Zhang, C. You, and B. Zheng, “Fast Distance Sampling for Uniform Circular Array in Near-Field 3D Beam-Focusing”, IEEE Signal Proc. Lett., vol. 31, pp. 2210-2214, Aug. 2025.

Near-field Communications: Localization and Sensing

  1. A. Chen, L. Chen, Y. Chen, N. Zhao, and C. You, “Near-Field Positioning and Attitude Sensing Based on Electromagnetic Propagation Modeling”, IEEE J. Sel. Areas Commun., vol. 42, no. 9, pp. 2179-2195, Sep. 2024.
  2. A. Chen, L. Chen, Y. Chen, C. You, G. Wei, and F. Yu, “Cramer-Rao Bounds of Near-Field Positioning Based on Electromagnetic Propagation Model”, IEEE Trans. Veh. Technol., vol. 72, no. 11, pp. 13808-13825, Nov. 2023.
  3. H. Cheng, C. You, C. Zhou, W. Yuan, and N. Wu, “Near-field Multi-target Localization with Coprime Arrays”, accepted to IEEE Trans. Commun.
  4. Z. Liu, B. Zheng, Q. Wu, C. You, W. Mei, K. Chen, J. Tang, “Reconfigurable Intelligent Surface-Aided Near-Field Localization With Array Spatial Correlation”, IEEE Wireless Commun. Lett., vol. 14, no. 7, pp. 2194-2198, July 2025.
  5. J. Li, C. You*, C. Zhou, Y. Zeng, and Z. Feng, “Near-field Target Localization: Effect of Hardware Impairments”, submitted to IEEE for possible publication.

Flexible Antenna Systems

  1. C. Zhou, C. You*, C. Zhou, L. Yao, W. Yuan, B. Zheng, and N. Wu, “Rotatable IRS-Assisted 6DMA Communications: A Two-timescale Design”, submitted to IEEE for possible publication.
  2. X. Shao, W. Mei, C. You, “A Tutorial on Six-Dimensional Movable Antenna Enhanced Wireless Networks: Synergizing Positionable and Rotatable Antennas”, accepted to IEEE Commun. Surveys Tuts. (ESI Highly Cited Paper, ESI Hot Paper)
  3. B. Zheng, T. Ma, C. You, J. Tang, R. Schober, and R. Zhang, “Rotatable antenna enabled wireless communication and sensing: Opportunities and challenges”, accepted to IEEE Wireless Commun. (ESI Highly Cited Paper, ESI Hot Paper)
  4. Y. Zhang, C. You*, and H. C. So, “Movable-Antenna Position Optimization: A New Evolutionary Framework”, accepted to IEEE Trans. Wireless Commun.
  5. C. Zhou, C. You*, B. Zheng, X. Shao, R. Zhang, “Rotatable antennas for integrated sensing and communications”, IEEE Wireless Commun. Lett., vol. 14, no. 9, pp. 2838-2842, Sep. 2025.
  6. C. Zhou, C. You*, S. Shi, and W. Mei, “Frequency-switching Array based Null-steering Beamforming for Physical-Layer Security in Terahertz Bands”, accepted to SCIENCE CHINA Information Sciences.
  7. L. Yao, C. You*, C. Zhou, B. Zheng, and W. Mei, “Position Optimization for Two-layer Movable Antenna Systems”, accepted to IEEE Wireless Commun. Lett.
  8. C. Zhou, B. Lyu, C. You, and Z. Liu, “Movable Antenna Enabled Symbiotic Radio Systems: An Opportunity for Mutualism”, IEEE Wireless Commun. Lett., vol. 13, no. 10, pp. 2752-2756, Oct. 2024.
  9. J. Feng, B. Zheng, C. You, P. Chen, X. Xiong, and F. Chen, “6D Deployment Optimization for Intelligent Reflecting Surface-Aided Wireless Communication”, IEEE Wireless Commun. Lett., vol. 14, no. 5, pp. 1276-1280, May 2025.
  10. L. Dai, B. Zheng, Q. Wu, C. You, R. Schober, and R. Zhang, “Rotatable antenna-enabled secure wireless communication”, accepted to IEEE Wireless Commun. Lett.
  11. B. Lyu, J. Guan, M. Hua, C. You, T. Mao, and A. Jamalipour, “Secure Transmission for Cell-Free Symbiotic Radio Communications with Movable Antenna: Continuous and Discrete Positioning Designs”, accepted to IEEE J. Sel. Areas Commun.

Intelligent Reflecting Surface: Survey & Tutorial

  1. Q. Wu, S. Zhang, B. Zheng, C. You, and R. Zhang, “Intelligent Reflecting Surface Aided Wireless Communications: A Tutorial”, IEEE Trans. Commun., vol. 69, no. 5, pp. 3313-3351, May 2021. (EIC Invited paper, ESI Hot Paper, ESI Highly Cited Paper, ArXiv)
  2. C. You, B. Zheng, W. Mei, and R. Zhang, “How to deploy intelligent reflecting surfaces in wireless network: BS-side, user-side or both sides?”, Journal of Communications and Information Networks, vol. 7, no. 1, March 2022. (Invited Paper, ArXiv)
  3. C. You, Z. Kang, Y. Zeng, and R. Zhang, “Enabling Smart Reflection in Integrated Air-Ground Wireless Network: IRS Meets UAV”, IEEE Wireless Commun., vol. 28, no. 6, pp. 138-144, Dec. 2021. (ArXiv)
  4. B. Zheng, C. You, W. Mei, and R. Zhang, “A Survey on Channel Estimation and Practical Passive Beamforming Design for Intelligent Reflecting Surface Aided Wireless Communications”, IEEE Commun. Surveys Tuts., vol. 24, no. 2, pp. 1035-1071, 2022. (ArXiv, ESI Highly Cited Paper, ESI Hot Paper)
  5. W. Mei, B. Zheng, C. You, and R. Zhang, “Intelligent Reflecting Surface Aided Wireless Networks: From Single-Reflection to Multi-Reflection Design and Optimization”, IEEE Proceedings, vol. 110, no. 9, pp. 1380-1400, 2022. (Invited Paper, ESI Highly Cited Paper)
  6. M. Zeng, W. Hao, Z. Peng, Z. Chu, X. Li, C. You, and C. Pan, “Resource Allocation for RIS-Empowered Wireless Communications: Low-Complexity and Robust Designs”, accepted to IEEE Wireless Commun.
  7. Q. Wu, B. Zheng, C. You, L. Zhu, K. Shen, X. Shao, W. Mei, B. Di, H. Zhang, E. Basar, L. Song, M. D. Renzo, Z. Luo, R. Zhang, “Intelligent Surfaces Empowered Wireless Network: Recent Advances and The Road to 6G”, accepted to Proc. IEEE. (ESI Hot Paper, ESI Highly Cited Paper)
  8. W. Ni, W. Wang, A. Zheng, P. Wang, C. You, Y. C. Eldar, D. Niyato, and R. Schober, “Two birds with one stone: Enhancing communication and sensing via multi-functional RIS”, IEEE Wireless Commun., vol. 32, no. 4, pp. 72-80, Aug. 2025.

Intelligent Reflecting Surface: Active IRS

  1. Z. Kang, C. You, and R. Zhang, “Active-IRS-Aided Wireless Communication: Fundamentals, Designs and Open Issues”, accepted to IEEE Wireless Commun. Mag.
  2. C. You and R. Zhang, “Wireless Communication Aided by Intelligent Reflecting Surface: Active or Passive?”, IEEE Wireless Commun. Lett., vol. 10, no. 12, pp. 2659-2663, Dec. 2021. (ArXiv, ESI Highly Cited Paper, Popular article in IEEE WCL)
  3. Y. Zhang, C. You*, and B. Zheng, “Multi-Active Multi-Passive (MAMP)-IRS Aided Wireless Communication: A Multi-Hop Beam Routing Design”, accepted to IEEE J. Sel. Areas Commun. (Popular article in IEEE JSAC)
  4. Y. Li, C. You*, Y. J. Chun, “Active-IRS Aided Wireless Network: System Modeling and Performance Analysis”, to appear in IEEE Commun. Lett.
  5. Z. Kang, C. You, and R. Zhang, “Active-Passive IRS aided Wireless Communication: New Hybrid Architecture and Elements Allocation Optimization”, accepted to IEEE Trans. Wireless Commun. (ESI Highly Cited Paper)
  6. Z. Kang, C. You, and R. Zhang, “Double-Active-IRS Aided Wireless Communication: Deployment Optimization and Capacity Scaling”, accepted to IEEE Wireless Commun. Lett.
  7. X. Li, C. You*, Z. Kang, Y. Zhang, and B. Zheng, “Double-Active-IRS Aided Wireless Communication with Total Amplification Power Constraint”, accepted to IEEE Commun. Lett.
  8. C. Zhou, B. Lyu, S. Gong, and C. You, “Active STAR-RIS Assisted Symbiotic Radio Communications Under Hardware Impairments”, accepted to IEEE Commun. Lett.
  9. J. Feng, F. Chen, B. Zheng, C. You, J. Tang, and F. Zhou, “Intelligent Reflecting Surface-Aided Wireless Relaying Communication: Active or Passive?”, accepted to IEEE Wireless Commun. Lett.

Intelligent Reflecting Surface: Passive IRS, Channel Estimation

  1. C. You, B. Zheng, and R. Zhang, “Channel Estimation and Passive Beamforming for Intelligent Reflecting Surface: Discrete Phase Shift and Progressive Refinement”, IEEE J. Sel. Areas Commun., vol. 38, no. 11, pp. 2604-2620, Nov. 2020. (ArXiv, IEEE ComSoc Best Readings in Reconfigurable Intelligent Surfaces, ESI Highly Cited Paper)
  2. C. You, B. Zheng, and R. Zhang, “Fast Beam Training for IRS-Assisted Multiuser Communications”, IEEE Wireless Commun. Lett., vol. 9, no. 11, pp. 1845-1849, Nov. 2020. (ArXiv)
  3. B. Zheng, C. You*, and R. Zhang, “Intelligent Reflecting Surface Assisted Multi-User OFDMA: Channel Estimation and Training Design”, IEEE Trans. Wireless Commun., vol. 19, no. 12, pp. 8315-8329, Dec. 2020. (ESI Highly Cited Paper, ArXiv)
  4. B. Zheng, C. You*, and R. Zhang, “Fast Channel Estimation for IRS-Assisted OFDM”, IEEE Wireless Commun. Lett., vol. 3, no. 10, pp. 580-584, 2021. (ArXiv)
  5. S. Abeywickrama, C. You*, R. Zhang, and C. Yuen, “Channel Estimation for Intelligent Reflecting Surface Assisted Backscatter Communication”, IEEE Wireless Commun. Lett., vol. 10, no. 11, pp. 2519-2523, Nov. 2021. (ArXiv)
  6. C. Wu, C. You, Y. Liu, X. Gu, and Y. Cai, “Channel Estimation for STAR-RIS-aided Wireless Communication”, IEEE Commun. Lett., vol. 26, no. 3, pp. 652-656, Mar. 2022. (ArXiv, ESI Highly Cited Paper)
  7. C. Wu, C. You*, Y. Liu, S. Shi, and M. Di Renzo, “Two-Timescale Design for STAR-RIS Aided NOMA Systems”, accepted to IEEE Trans. Commun.
  8. Z. Li, W. Yuan, B. Li, J. Wu, C. You, and F. Meng, “Reconfigurable Intelligent Surface Aided OTFS: Transmission Scheme and Channel Estimation”, to appear in IEEE Internet of Things.
  9. Y. Zhu, Y. Liu, Q. Wu, C. You, and Q. Shi, “Channel Estimation By Transmitting Pilots From Reconfigurable Intelligent Surface”, accepted to IEEE Trans. Wireless Commun.

Intelligent Reflecting Surface: Passive IRS, Deployment and Multi-IRS

  1. C. You, B. Zheng, and R. Zhang, “Wireless Communication via Double IRS: Channel Estimation and Passive Beamforming Designs”, IEEE Wireless Commun. Lett., vol. 10, no. 2, pp. 431-435, Feb. 2021. (ArXiv)
  2. Z. Kang, C. You*, and R. Zhang, “IRS-Aided Wireless Relaying: Optimal Deployment and Capacity Scaling”, IEEE Wireless Commun. Lett., vol. 11, no. 2, pp. 215-219, Feb. 2022. (ArXiv)
  3. B. Zheng, C. You*, and R. Zhang, “Double-IRS Assisted Multi-User MIMO: Cooperative Passive Beamforming Design”, IEEE Trans. Wireless Commun., vol. 20, no. 7, pp. 4513-4526, July 2021. (ArXiv, ESI Highly Cited Paper)
  4. B. Zheng, C. You*, and R. Zhang, “Efficient Channel Estimation for Double-IRS Aided Multi-User MIMO System”, IEEE Trans. Commun., vol. 10, no. 3, pp. 580-584, Mar. 2021. (ArXiv)
  5. J. Feng, B. Zheng, C. You, F. Chen, W. Che, and Q. Xue, “Joint Passive Beamforming and Deployment Design for Dual Distributed-IRS Aided Communication”, accepted to IEEE Trans. Veh. Technol.
  6. B. Zheng, T. Ma, J. Tang, C. You, S. Lin, and K. K. Wong, “Reconfigurable Intelligent Surface-Aided Multiuser Communication: Co-design of Transmit Diversity and Active/Passive Precoding”, submitted to IEEE for possible publication.

Intelligent Reflecting Surface: Communication, Computing and Sensing

  1. X. Shao, C. You, and R. Zhang, “Intelligent Reflecting Surface Aided Wireless Sensing: Applications and Design Issues”, accepted to IEEE Wireless Commun. Mag.
  2. X. Shao, C. You*, W. Ma, X. Chen, and R. Zhang, “Target Sensing with Intelligent Reflecting Surface: Architecture and Performance”, IEEE J. Sel. Areas Commun., vol. 40, no. 7, pp. 2070-2084, 2022. (ESI Highly Cited Paper)
  3. F. Zhou, C. You*, and R. Zhang, “Delay-Optimal Scheduling for IRS-Aided Mobile Edge Computing”, IEEE Wireless Commun. Lett., vol. 10, no. 4, pp. 740-744, Apr. 2021. (ArXiv)
  4. T. Zhang, S. Wang, Y. Zhuang, C. You, M. Wen, and Y.-C. Wu, “Reconfigurable Intelligent Surface Assisted OFDM Relaying: Subcarrier Matching with Balanced SNR”, IEEE Trans. Veh. Technol., vol. 72, no. 2, pp. 2216-2230, Feb. 2022.

Edge Computing, Edge Learning and Semantic Communications

  1. Y. Mao, C. You*, J. Zhang, K. Huang, and K. B. Letaief, “A Survey on Mobile Edge Computing: The Communication Perspective”, IEEE Commun. Surveys Tuts., vol. 19, issue 4, pp. 2322-2358, 2017. (ArXiv, ESI Highly Cited Paper)
  2. C. You, K. Huang, H. Chae and B. Kim, “Energy-Efficient Resource Allocation for Mobile-Edge Computation Offloading”, IEEE Trans. Wireless Commun., vol. 16, no. 3, pp. 1397-1411, Mar. 2017. (ArXiv, ESI Highly Cited Paper, ESI Hot Paper, IEEE ComSoc Asia-Pacific Outstanding Paper Award 2019)
  3. C. You, K. Huang and H. Chae, “Energy Efficient Mobile Cloud Computing Powered by Wireless Energy Transfer”, IEEE J. Sel. Areas Commun., vol. 34, no. 5, pp. 1757-1771, May 2016. (ArXiv, ESI Highly Cited Paper)
  4. C. You and K. Huang, “Exploiting Non-Causal CPU-State Information for Energy-Efficient Mobile Cooperative Computing”, IEEE Trans. Wireless Commun., vol. 17, no. 6, pp. 4104-4117, June 2018. (ArXiv)
  5. C. You, Y. Zeng, R. Zhang, K. Huang, “Asynchronous Mobile-Edge Computation Offloading: Energy-Efficient Resource Management”, IEEE Trans. Wireless Commun., vol. 17, no. 11, pp. 7590-7605, Sep. 2018. (ArXiv)
  6. C. You, “Resource Management in Mobile Edge Computing”, to appear in ZTE Commun. (Invited paper)
  7. G. Zhu, D. Liu, Y. Du, C. You, J. Zhang, and K. Huang, “Towards an Intelligent Edge: Wireless Communication Meets Machine Learning”, IEEE Commun. Mag., vol. 58, no. 1, pp. 19-25, Jan. 2020. (ArXiv, ESI Highly Cited Paper, ESI Hot Paper, Best reading in Machine Learning in Communications of IEEE ComSoc research library)
  8. Y. Tao, C. You, P. Zhang, K. Huang, “Stochastic Control of Computation Offloading to a Helper with a Dynamically Loaded CPU”, IEEE Trans. Wireless Commun., vol. 18, no. 2, pp. 1247-1262, Feb. 2019. (ArXiv)
  9. X. Li, C. You, S. Andreev, Y. Gong, and K. Huang, “Wirelessly Powered Crowd Sensing: Joint Power Transfer, Sensing, Compression, and Transmission”, IEEE J. Sel. Areas Commun., vol. 37, no. 2, pp. 391-406, Feb. 2019. (ArXiv)
  10. Z. Zhou, X. Li, C. You, K. Huang, Y. Gong, “Joint Sensing and Communication Rates Control for Energy Efficient Mobile Crowd Sensing”, accepted to IEEE Trans. Wireless Commun., vol. 22, no. 2, pp. 1314-1327, Feb. 2023.
  11. L. Zeng, D. Wen, G. Zhu, C. You, Q. Chen, and Y. Shi, “Federated Learning with Energy Harvesting Devices”, accepted to IEEE Trans. Green Commun. Netw.
  12. S. Xie, D. Wen, X. Liu, C. You, T. Ratnarajah, K. Huang, “Federated Dropout: Convergence Analysis and Resource Allocation”, submitted to IEEE for possible publication.
  13. Q. Fan, L. Chen, C. You, Y. Chen, and H. Yin, “Dependency-Aware Service Migration for Backhaul-Free Vehicular Edge Computing Networks”, accepted to IEEE Trans. Veh. Technol.
  14. B. Fang, L. Chen, Y. Chen, C. You, X. Chen, and W. Wang, “Wireless Coded Computation with Error Detection”, accepted to IEEE Trans. Commun.
  15. Z. Hu, C. You*, T. Liu, D. Wen, Y. Hu, Y. Cui, Y. Gong, and K. Huang, “Semantic Communication Meets Edge Intelligence: Semantic-Relay-Aided Text Transmissions”, accepted to IEEE Internet of Things Journal.
  16. Y. Zhou, C. You, and K. Huang, “Communication Efficient Cooperative Edge AI via Event-Triggered Computation Offloading”, accepted to IEEE Trans. Commun.

UAV Communications and Low-altitude Economy

  1. C. You, R. Zhang, “3D Trajectory Optimization in Rician Fading for UAV-Enabled Data Harvesting”, IEEE Trans. Wireless Commun., vol. 18, no. 6, pp. 3192-3207, Jun. 2019. (ArXiv, ESI Highly Cited Paper)
  2. C. You, R. Zhang, “Hybrid Offline-Online Design for UAV-Enabled Data Harvesting in Probabilistic LoS Channel”, IEEE Trans. Wireless Commun., vol. 19, no. 6, pp. 3753-3768, Mar. 2020. (ArXiv)
  3. Z. Kang, C. You*, and R. Zhang, “3D Placement for Multi-UAV Relaying: An Iterative Gibbs-Sampling and Block Coordinate Descent Optimization Approach”, IEEE Trans. Commun., vol. 69, no. 3, pp. 2047-2062, 2021. (ArXiv)
  4. Y. Guo, C. You*, C. Yin, and R. Zhang, “UAV Trajectory and Communication Co-design: Flexible Path Discretization and Path Compression”, IEEE J. Sel. Areas Commun., vol. 39, no. 11, pp. 3506-3523, Nov. 2021. (ArXiv)
  5. T. Liu, G. Zhang, M. Cui, C. You, Q. Wu, S. Ma, and W. Chen, “Task Completion Time Minimization for UAV-Enabled Data Collection in Rician Fading Channels”, IEEE Internet of Things Journal, vol. 10, no. 2, pp. 1134-1148, Jan. 2023.
  6. W. Liu, X. Zhang, J. Ren, W. Yuan, C. You, and S. Li, “UAV-Enabled ISAC Systems with Fluid Antennas”, submitted to IEEE for possible publication.

Others

  1. B. Lyu, C. You, Z. Yang, and G. Gui, “The Optimal Control Policy for RF-Powered Backscatter Communication Networks”, IEEE Trans. Veh. Technol., vol. 67, no. 3, pp. 2804-2808, Mar. 2017.
  2. M. Zhang, C. You and Z. Zhu, “On the Parallelization of Spectrum Defragmentation Reconfigurations in Elastic Optical Networks”, IEEE/ACM Trans. Netw., vol. 24, no. 5, pp. 2819-2833, 2016.
  3. M. Zhang, C. You and Z. Zhu, “Dynamic and Adaptive Bandwidth Defragmentation in Spectrum-Sliced Elastic Optical Networks with Time Varying Traffic”, IEEE J. Lightwave Technol., vol. 32, no. 5, pp. 1014-1023, Mar. 2014.
  4. Y. Fang, L. Chen, C. You, and H. Yin, “Rethinking Massive MIMO Detection: A Memristor Approach”, accepted to IEEE Commun. Lett., 2023.
  5. G. Li, S. Wu, C. You, W. Zhang, G. Shang, and X. Zhou, “Cell-Free Massive MIMO-OFDM: Asynchronous Reception and Performance Analysis”, accepted to IEEE Internet of Things Journal.
  6. G. Li, S. Wu, C. You, W. Zhang, and G. Shang, “Asynchronous Cell-Free Massive MIMO-OFDM: Mixed Coherent and Non-Coherent Transmissions”, accepted to IEEE Commun. Lett.
  7. S. Wang, L. Chen, J. Zhou, Y. Chen, K. Han, and C. You, “Unified ISAC Pareto Boundary Based on Mutual Information and Minimum Mean-Square Error Estimation”, accepted to IEEE Trans. Commun.
  8. L. Chen, H. Zhang, C. You, and G. Wei, “CoMP ISAC Design Adopting Distinct Symbol Durations and Waveforms”, accepted to IEEE Trans. Wireless Commun.
  9. Y. Fang, L. Chen, Y. Chen, W. Wang, and C. You, “Mixed-Precision Quantization: Make the Best Use of Bits Where They Matter Most”, accepted to IEEE J. Sel. Topics Signal Process.

Patent

  1. H. Chae, K. Huang, and C. You, “Method and apparatus for an input data processing via a local computing or offloading based on power harvesting in a wireless communication system”, US patent 10111024.
  2. H. Chae, B. Kim, K. Huang, and C. You, “Method and apparatus for indicating an offloading data size and time duration in a wireless communication system”, US patent 10568000.

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