暂无分享,去创建一个
A. Lee Swindlehurst | Qingqing Wu | Meng Hua | Chunguo Li | Luxi Yang | Cunhua Pan | A. L. Swindlehurst | Qingqing Wu | Cunhua Pan | Luxi Yang | Meng Hua | Chunguo Li
[1] Qingqing Wu,et al. Joint Trajectory and Communication Design for Multi-UAV Enabled Wireless Networks , 2017, IEEE Transactions on Wireless Communications.
[2] Qingqing Wu,et al. Weighted Sum Power Maximization for Intelligent Reflecting Surface Aided SWIPT , 2019, IEEE Wireless Communications Letters.
[3] Yong Zeng,et al. Aerial–Ground Cost Tradeoff for Multi-UAV-Enabled Data Collection in Wireless Sensor Networks , 2020, IEEE Transactions on Communications.
[4] Yongming Huang,et al. Power-Efficient Communication in UAV-Aided Wireless Sensor Networks , 2018, IEEE Communications Letters.
[5] Kezhi Wang,et al. Intelligent Reflecting Surface Aided Multigroup Multicast MISO Communication Systems , 2020, IEEE Transactions on Signal Processing.
[6] Meng Hua,et al. Throughput Maximization for Full-Duplex UAV Aided Small Cell Wireless Systems , 2019, IEEE Wireless Communications Letters.
[7] Chau Yuen,et al. Reconfigurable Intelligent Surfaces for Energy Efficiency in Wireless Communication , 2018, IEEE Transactions on Wireless Communications.
[8] Geoffrey Ye Li,et al. Joint Transceiver Design for Secure Downlink Communications Over an Amplify-and-Forward MIMO Relay , 2017, IEEE Transactions on Communications.
[9] Xiaojun Yuan,et al. Passive Beamforming and Information Transfer via Large Intelligent Surface , 2019, IEEE Wireless Communications Letters.
[10] Yongming Huang,et al. Energy-Efficient Cooperative Secure Transmission in Multi-UAV-Enabled Wireless Networks , 2019, IEEE Transactions on Vehicular Technology.
[11] A. Lee Swindlehurst,et al. Joint Symbol-Level Precoding and Reflecting Designs for IRS-Enhanced MU-MISO Systems , 2019, IEEE Transactions on Wireless Communications.
[12] Qingqing Wu,et al. Securing UAV Communications via Joint Trajectory and Power Control , 2018, IEEE Transactions on Wireless Communications.
[13] Tamás Terlaky,et al. A computational view of interior point methods , 1996 .
[14] Shi Jin,et al. Large Intelligent Surface-Assisted Wireless Communication Exploiting Statistical CSI , 2018, IEEE Transactions on Vehicular Technology.
[15] Rui Zhang,et al. Towards Smart and Reconfigurable Environment: Intelligent Reflecting Surface Aided Wireless Network , 2019, IEEE Communications Magazine.
[16] Ying-Chang Liang,et al. Reconfigurable Intelligent Surface Assisted UAV Communication: Joint Trajectory Design and Passive Beamforming , 2022 .
[17] Changsheng You,et al. Intelligent Reflecting Surface-Aided Wireless Communications: A Tutorial , 2020, IEEE Transactions on Communications.
[18] Jie Xu,et al. UAV-Enabled Wireless Power Transfer: Trajectory Design and Energy Optimization , 2017, IEEE Transactions on Wireless Communications.
[19] Mohammad Shikh-Bahaei,et al. Reflections in the Sky: Joint Trajectory and Passive Beamforming Design for Secure UAV Networks with Reconfigurable Intelligent Surface , 2020 .
[20] Geoffrey Ye Li,et al. An Overview of Sustainable Green 5G Networks , 2016, IEEE Wireless Communications.
[21] Amr M. Youssef,et al. Ultra-Dense Networks: A Survey , 2016, IEEE Communications Surveys & Tutorials.
[22] Lajos Hanzo,et al. Multicell MIMO Communications Relying on Intelligent Reflecting Surfaces , 2019, IEEE Transactions on Wireless Communications.
[23] A. Lee Swindlehurst,et al. Millimeter-wave massive MIMO: the next wireless revolution? , 2014, IEEE Communications Magazine.
[24] Ronghong Mo,et al. Reconfigurable Intelligent Surface Assisted Multiuser MISO Systems Exploiting Deep Reinforcement Learning , 2020, IEEE Journal on Selected Areas in Communications.
[25] Lajos Hanzo,et al. Intelligent Reflecting Surface Aided MIMO Broadcasting for Simultaneous Wireless Information and Power Transfer , 2019, IEEE Journal on Selected Areas in Communications.
[26] Qian Ma,et al. Smart metasurface with self-adaptively reprogrammable functions , 2019, Light: Science & Applications.
[27] Qiang Cheng,et al. Wireless Communications With Reconfigurable Intelligent Surface: Path Loss Modeling and Experimental Measurement , 2019, IEEE Transactions on Wireless Communications.
[28] Mohamed-Slim Alouini,et al. Smart Radio Environments Empowered by Reconfigurable Intelligent Surfaces: How it Works, State of Research, and Road Ahead , 2020, ArXiv.
[29] Tie Jun Cui,et al. Information metamaterials and metasurfaces , 2017 .
[30] Rose Qingyang Hu,et al. Computation Rate Maximization in UAV-Enabled Wireless-Powered Mobile-Edge Computing Systems , 2018, IEEE Journal on Selected Areas in Communications.
[31] Rui Zhang,et al. Joint Power Control and Passive Beamforming in IRS-Assisted Spectrum Sharing , 2020, IEEE Communications Letters.
[32] Ying-Chang Liang,et al. Symbiotic Radio: A New Communication Paradigm for Passive Internet of Things , 2018, IEEE Internet of Things Journal.
[33] H. Vincent Poor,et al. Large Intelligent Surface/Antennas (LISA) Assisted Symbiotic Radio for IoT Communications , 2020, 2002.00340.
[34] Jun Zhao,et al. Deep Reinforcement Learning-Based Intelligent Reflecting Surface for Secure Wireless Communications , 2020, IEEE Transactions on Wireless Communications.
[35] David Tse,et al. Fundamentals of Wireless Communication , 2005 .
[36] Qingqing Wu,et al. Intelligent Reflecting Surface Enhanced Wireless Network via Joint Active and Passive Beamforming , 2018, IEEE Transactions on Wireless Communications.
[37] Shuowen Zhang,et al. Intelligent Reflecting Surface Meets OFDM: Protocol Design and Rate Maximization , 2019, IEEE Transactions on Communications.