Reconfigurable Intelligent Surface Enabled Vehicular Communication: Joint User Scheduling and Passive Beamforming
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Chadi Assi | Sanaa Sharafeddine | Ahmed Al-Hilo | Moataz Samir | Mohamed Elhattab | C. Assi | S. Sharafeddine | M. Samir | M. Elhattab | Ahmed Al-Hilo
[1] Gaojie Chen,et al. A Hybrid Relay and Intelligent Reflecting Surface Network and Its Ergodic Performance Analysis , 2020, IEEE Wireless Communications Letters.
[2] Erik G. Larsson,et al. Intelligent Reflecting Surface-Assisted Cognitive Radio System , 2019, IEEE Transactions on Communications.
[3] Xiaojun Yuan,et al. Passive Beamforming and Information Transfer Design for Reconfigurable Intelligent Surfaces Aided Multiuser MIMO Systems , 2019, IEEE Journal on Selected Areas in Communications.
[4] Zhu Han,et al. Hybrid Beamforming for Reconfigurable Intelligent Surface based Multi-User Communications: Achievable Rates With Limited Discrete Phase Shifts , 2019, IEEE Journal on Selected Areas in Communications.
[5] Walid Saad,et al. Distributional Reinforcement Learning for mmWave Communications with Intelligent Reflectors on a UAV , 2020, GLOBECOM 2020 - 2020 IEEE Global Communications Conference.
[6] Symeon Chatzinotas,et al. Secure Vehicular Communications Through Reconfigurable Intelligent Surfaces , 2020, IEEE Transactions on Vehicular Technology.
[7] Marco Di Renzo,et al. Reconfigurable Intelligent Surfaces-Assisted Communications With Discrete Phase Shifts: How Many Quantization Levels Are Required to Achieve Full Diversity? , 2020, IEEE Wireless Communications Letters.
[8] Rui Zhang,et al. Towards Smart and Reconfigurable Environment: Intelligent Reflecting Surface Aided Wireless Network , 2019, IEEE Communications Magazine.
[9] Xu Bao,et al. Outage Analysis for Intelligent Reflecting Surface Assisted Vehicular Communication Networks , 2020, GLOBECOM 2020 - 2020 IEEE Global Communications Conference.
[10] Qingqing Wu,et al. Beamforming Optimization for Wireless Network Aided by Intelligent Reflecting Surface With Discrete Phase Shifts , 2019, IEEE Transactions on Communications.
[11] Yong Zhou,et al. Reconfigurable Intelligent Surface Assisted Massive MIMO with Antenna Selection , 2020, IEEE Transactions on Wireless Communications.
[12] Walid Saad,et al. Deep Reinforcement Learning for Energy-Efficient Networking with Reconfigurable Intelligent Surfaces , 2020, ICC 2020 - 2020 IEEE International Conference on Communications (ICC).
[13] Halim Yanikomeroglu,et al. Optimal Tradeoff Between Sum-Rate Efficiency and Jain's Fairness Index in Resource Allocation , 2013, IEEE Transactions on Wireless Communications.
[14] Ying Wang,et al. Resource Allocation for Intelligent Reflecting Surface Aided Vehicular Communications , 2020, IEEE Transactions on Vehicular Technology.
[15] Harpreet S. Dhillon,et al. Coverage and Rate Analysis of Downlink Cellular Vehicle-to-Everything (C-V2X) Communication , 2019, IEEE Transactions on Wireless Communications.
[16] Ali Ghrayeb,et al. Leveraging UAVs for Coverage in Cell-Free Vehicular Networks: A Deep Reinforcement Learning Approach , 2021, IEEE Transactions on Mobile Computing.
[17] Ali Ghrayeb,et al. Optimizing Age of Information Through Aerial Reconfigurable Intelligent Surfaces: A Deep Reinforcement Learning Approach , 2020, IEEE Transactions on Vehicular Technology.
[18] Nandana Rajatheva,et al. Intelligent Reflecting Surface Aided Vehicular Communications , 2020, 2020 IEEE Globecom Workshops (GC Wkshps.
[19] Tor Ame Johansen,et al. Deep Reinforcement Learning Attitude Control of Fixed-Wing UAVs Using Proximal Policy optimization , 2019, 2019 International Conference on Unmanned Aircraft Systems (ICUAS).
[20] Chau Yuen,et al. Intelligent Reflecting Surface: Practical Phase Shift Model and Beamforming Optimization , 2019, ICC 2020 - 2020 IEEE International Conference on Communications (ICC).
[21] Ali Ghrayeb,et al. Reconfigurable Intelligent Surface Assisted Coordinated Multipoint in Downlink NOMA Networks , 2021, IEEE Communications Letters.
[22] Mohammad Shikh-Bahaei,et al. Reflections in the Sky: Joint Trajectory and Passive Beamforming Design for Secure UAV Networks with Reconfigurable Intelligent Surface , 2020 .
[23] Matthew J. Murrian,et al. Deep-Urban Unaided Precise Global Navigation Satellite System Vehicle Positioning , 2019, IEEE Intelligent Transportation Systems Magazine.
[24] Zhu Han,et al. Reconfigurable Intelligent Surfaces Assisted Communications With Limited Phase Shifts: How Many Phase Shifts Are Enough? , 2020, IEEE Transactions on Vehicular Technology.
[25] Chadi Assi,et al. UAV-Assisted Content Delivery in Intelligent Transportation Systems-Joint Trajectory Planning and Cache Management , 2021, IEEE Transactions on Intelligent Transportation Systems.
[26] Changsheng You,et al. Channel Estimation and Passive Beamforming for Intelligent Reflecting Surface: Discrete Phase Shift and Progressive Refinement , 2020, IEEE Journal on Selected Areas in Communications.
[27] Qiang Cheng,et al. MIMO Transmission Through Reconfigurable Intelligent Surface: System Design, Analysis, and Implementation , 2020, IEEE Journal on Selected Areas in Communications.
[28] Arumugam Nallanathan,et al. Latency Minimization for Intelligent Reflecting Surface Aided Mobile Edge Computing , 2020, IEEE Journal on Selected Areas in Communications.
[29] Mohamed-Slim Alouini,et al. Intelligent Reflecting Surface-Assisted Multi-User MISO Communication: Channel Estimation and Beamforming Design , 2019, IEEE Open Journal of the Communications Society.
[30] Ying-Chang Liang,et al. Reconfigurable Intelligent Surface Assisted UAV Communication: Joint Trajectory Design and Passive Beamforming , 2022 .
[31] Caijun Zhong,et al. Location Information Aided Multiple Intelligent Reflecting Surface Systems , 2020, IEEE Transactions on Communications.
[32] Danda B. Rawat,et al. Physical Layer Security for V2I Communications: Reflecting Surfaces Vs. Relaying , 2020, 2021 IEEE Global Communications Conference (GLOBECOM).
[33] Zhu Han,et al. Practical Hybrid Beamforming With Finite-Resolution Phase Shifters for Reconfigurable Intelligent Surface Based Multi-User Communications , 2020, IEEE Transactions on Vehicular Technology.