暂无分享,去创建一个
Zhu Han | Choong Seon Hong | Madyan Alsenwi | Nguyen H. Tran | Anupam Kumar Bairagi | Md. Shirajum Munir | Mehedi Masud | Sultan S Alshamrani | N. H. Tran | Sultan S. Alshamrani | Zhu Han | C. Hong | S. Alshamrani | Mehedi Masud | M. S. Munir | A. Bairagi | Madyan Alsenwi
[1] Petar Popovski,et al. 5G Wireless Network Slicing for eMBB, URLLC, and mMTC: A Communication-Theoretic View , 2018, IEEE Access.
[2] D. Hunter,et al. A Tutorial on MM Algorithms , 2004 .
[3] H. Vincent Poor,et al. Ultrareliable and Low-Latency Wireless Communication: Tail, Risk, and Scale , 2018, Proceedings of the IEEE.
[4] Gustavo de Veciana,et al. Joint Scheduling of URLLC and eMBB Traffic in 5G Wireless Networks , 2017, IEEE INFOCOM 2018 - IEEE Conference on Computer Communications.
[5] Byonghyo Shim,et al. Ultra-Reliable and Low-Latency Communications in 5G Downlink: Physical Layer Aspects , 2017, IEEE Wireless Communications.
[6] Choong Seon Hong,et al. QoE-Enabled Unlicensed Spectrum Sharing in 5G: A Game-Theoretic Approach , 2018, IEEE Access.
[7] F. L. Hitchcock. The Distribution of a Product from Several Sources to Numerous Localities , 1941 .
[8] Mehdi Bennis,et al. eMBB-URLLC Resource Slicing: A Risk-Sensitive Approach , 2019, IEEE Communications Letters.
[9] Abraham Charnes,et al. The Stepping Stone Method of Explaining Linear Programming Calculations in Transportation Problems , 1954 .
[10] Klaus I. Pedersen,et al. Opportunistic Spatial Preemptive Scheduling for URLLC and eMBB Coexistence in Multi-User 5G Networks , 2018, IEEE Access.
[11] Zhi-Quan Luo,et al. Network Slicing for Service-Oriented Networks Under Resource Constraints , 2017, IEEE Journal on Selected Areas in Communications.
[12] Vincent Y. F. Tan,et al. The Dispersion of Nearest-Neighbor Decoding for Additive Non-Gaussian Channels , 2017, IEEE Trans. Inf. Theory.
[13] ZhangJun,et al. Adaptive spatial intercell interference cancellation in multicell wireless networks , 2010 .
[14] Xiaofeng Liu,et al. Signal space diversity aided dynamic multiplexing for eMBB and URLLC traffics , 2017, 2017 3rd IEEE International Conference on Computer and Communications (ICCC).
[15] Choong Seon Hong,et al. A matching based coexistence mechanism between eMBB and uRLLC in 5G wireless networks , 2019, SAC.
[16] Klaus I. Pedersen,et al. Punctured Scheduling for Critical Low Latency Data on a Shared Channel with Mobile Broadband , 2017, 2017 IEEE 86th Vehicular Technology Conference (VTC-Fall).
[17] D. Julian. Erasure networks , 2002, Proceedings IEEE International Symposium on Information Theory,.
[18] Raj Jain,et al. A Quantitative Measure Of Fairness And Discrimination For Resource Allocation In Shared Computer Systems , 1998, ArXiv.
[19] Wanshi Chen,et al. 5G ultra-reliable and low-latency systems design , 2017, 2017 European Conference on Networks and Communications (EuCNC).
[20] Nesa L'abbe Wu,et al. Linear programming and extensions , 1981 .
[21] Peng Liu,et al. An iterative reweighted minimization framework for joint channel and power allocation in the OFDMA system , 2015, 2015 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP).
[23] Zhu Han,et al. Block Sparse Bayesian Learning-Based NB-IoT Interference Elimination in LTE-Advanced Systems , 2017, IEEE Transactions on Communications.
[24] Yan Huang,et al. A Deep-Reinforcement-Learning-Based Approach to Dynamic eMBB/URLLC Multiplexing in 5G NR , 2020, IEEE Internet of Things Journal.
[25] Petar Popovski,et al. Coexistence of URLLC and eMBB Services in the C-RAN Uplink: An Information-Theoretic Study , 2018, 2018 IEEE Global Communications Conference (GLOBECOM).
[26] Klaus I. Pedersen,et al. Preemptive Scheduling of Latency Critical Traffic and Its Impact on Mobile Broadband Performance , 2018, 2018 IEEE 87th Vehicular Technology Conference (VTC Spring).
[27] Klaus I. Pedersen,et al. Agile 5G Scheduler for Improved E2E Performance and Flexibility for Different Network Implementations , 2018, IEEE Communications Magazine.
[28] Klaus I. Pedersen,et al. Multi-User Preemptive Scheduling For Critical Low Latency Communications in 5G Networks , 2018, 2018 IEEE Symposium on Computers and Communications (ISCC).
[29] David López-Pérez,et al. Resource Scheduling for Mixed Traffic Types with Scalable TTI in Dynamic TDD Systems , 2016, 2016 IEEE Globecom Workshops (GC Wkshps).
[30] Jeffrey G. Andrews,et al. Adaptive Spatial Intercell Interference Cancellation in Multicell Wireless Networks , 2009, IEEE Journal on Selected Areas in Communications.
[31] Petar Popovski,et al. Non-Orthogonal Multiplexing of Ultra-Reliable and Broadband Services in Fog-Radio Architectures , 2018, IEEE Access.
[32] Preben E. Mogensen,et al. A flexible 5G frame structure design for frequency-division duplex cases , 2016, IEEE Communications Magazine.
[33] Choong Seon Hong,et al. Resource Allocation for Ultra-Reliable and Enhanced Mobile Broadband IoT Applications in Fog Network , 2019, IEEE Transactions on Communications.
[34] Kai Ying,et al. Coexistence of enhanced mobile broadband communications and ultra-reliable low-latency communications in mobile front-haul , 2018, OPTO.
[35] Walid Saad,et al. Bargaining game for effective coexistence between LTE-U and Wi-Fi systems , 2018, NOMS 2018 - 2018 IEEE/IFIP Network Operations and Management Symposium.
[36] Klaus I. Pedersen,et al. Joint Link Adaptation and Scheduling for 5G Ultra-Reliable Low-Latency Communications , 2018, IEEE Access.
[37] T. Barclay,et al. A Modification Of Vogel’S Approximation Method Through The Use Of Heuristics , 1981 .
[38] Hamdy A. Taha,et al. Operations research: an introduction / Hamdy A. Taha , 1982 .
[39] Zhi-Quan Luo,et al. A Unified Convergence Analysis of Block Successive Minimization Methods for Nonsmooth Optimization , 2012, SIAM J. Optim..