4 | -- | 0 | Khaled Ben Letaief, Zhi Ding 0001. Expanding IT Services for the Benefits of Membe rs |
13 | -- | 16 | Carlos A. Gutiérrez 0001, Carlos Eugenio Martinez-Cruz, Yi Qian, Iswadi Hasyim Rosma, Jacek Rak, Poul E. Heegaard, Bjarne E. Helvik. Global Communications Newsletter |
18 | -- | 0 | Yang Yang 0001, Tao Zhang 0005, Jun Wang, Nanxi Chen, Rhonda A. Dirvin. Fog Services and Enabling Technologies |
20 | -- | 27 | Yiqing Zhou, Lin Tian, Ling Liu 0006, Yanli Qi. Fog Computing Enabled Future Mobile Communication Networks: A Convergence of Communication and Computing |
28 | -- | 33 | Jonggwan An, Wenbin Li, Franck Le Gall, Ernö Kovacs, Jaeho Kim, Tarik Taleb, JaeSeung Song. EiF: Toward an Elastic IoT Fog Framework for AI Services |
34 | -- | 41 | Sergey Andreev 0001, Vitaly Petrov, Kaibin Huang, Maria A. Lema, Mischa Dohler. Dense Moving Fog for Intelligent IoT: Key Challenges and Opportunities |
42 | -- | 48 | Wenjuan Tang, Kuan Zhang, Deyu Zhang, Ju Ren, Yaoxue Zhang, Xuemin Sherman Shen. Fog-Enabled Smart Health: Toward Cooperative and Secure Healthcare Service Provision |
49 | -- | 55 | Sheng Zhou, Yuxuan Sun, Zhiyuan Jiang, Zhisheng Niu. Exploiting Moving Intelligence: Delay-Optimized Computation Offloading in Vehicular Fog Networks |
56 | -- | 0 | Irena Atov, Kwang-Cheng Chen, Shui Yu. Data Science and Artificial Intelligence for Communications |
57 | -- | 63 | Minhoe Kim, Woongsup Lee, Jungmin Yoon, Ohyun Jo. Toward the Realization of Encoder and Decoder Using Deep Neural Networks |
64 | -- | 69 | Jin Wang, Jia Hu, Geyong Min, Wenhan Zhan, Qiang Ni, Nektarios Georgalas. Computation Offloading in Multi-Access Edge Computing Using a Deep Sequential Model Based on Reinforcement Learning |
70 | -- | 75 | Paulo Victor Rodrigues Ferreira, Randy C. Paffenroth, Alexander M. Wyglinski, Timothy M. Hackett, Sven G. Bilen, Richard C. Reinhart, Dale J. Mortensen. Reinforcement Learning for Satellite Communications: From LEO to Deep Space Operations |
76 | -- | 81 | Shahbaz Rezaei, Xin Liu. Deep Learning for Encrypted Traffic Classification: An Overview |
82 | -- | 87 | Debashri Roy, Tathagata Mukherjee, Mainak Chatterjee. Machine Learning in Adversarial RF Environments |
88 | -- | 0 | Walter Cerroni, Alex Galis, Kohei Shiomoto, Mohamed Faten Zhani. Telecom Software, Network Virtualization, and Software Defined Networks |
89 | -- | 95 | Thomas Soenen, Wouter Tavernier, Manuel Peuster, Felipe Vicens, George Xilouris, Stavros Kolometsos, Michail-Alexandros Kourtis, Didier Colle. Empowering Network Service Developers: Enhanced NFV DevOps and Programmable MANO |
96 | -- | 102 | Manuel Peuster, Stefan Schneider, Mengxuan Zhao, George Xilouris, Panagiotis Trakadas, Felipe Vicens, Wouter Tavernier, Thomas Soenen, Ricard Vilalta, George Andreou, Dimosthenis Kyriazis, Holger Karl. Introducing Automated Verification and Validation for Virtualized Network Functions and Services |
103 | -- | 109 | Faqir Zarrar Yousaf, Vincenzo Sciancalepore, Marco Liebsch, Xavier Costa-Pérez. MANOaaS: A Multi-Tenant NFV MANO for 5G Network Slices |
110 | -- | 116 | MohammadAli Mohammadi, Xiaoyan Shi, Batu K. Chalise, Zhiguo Ding, Himal A. Suraweera, Caijun Zhong, John S. Thompson. Full-Duplex Non-Orthogonal Multiple Access for Next Generation Wireless Systems |
117 | -- | 123 | Georg K. Hampel, Chong Li, Junyi Li. 5G Ultra-Reliable Low-Latency Communications in Factory Automation Leveraging Licensed and Unlicensed Bands |
124 | -- | 130 | Jie Hu 0001, Yizhe Zhao, Kun Yang 0001. Modulation and Coding Design for Simultaneous Wireless Information and Power Transfer |
131 | -- | 137 | Huawei Huang, Song Guo 0001. Proactive Failure Recovery for NFV in Distributed Edge Computing |
138 | -- | 144 | Petra Vizarreta, Amaury Van Bemten, Ermin Sakic, Khawar Abbasi, Nikolaos E. Petroulakis, Wolfgang Kellerer, Carmen Mas Machuca. Incentives for a Softwarization of Wind Park Communication Networks |
145 | -- | 151 | Tong Bai, Hongming Zhang, Jiankang Zhang, Chao Xu 0005, Anas F. Al Rawi, Lajos Hanzo. Impulsive Noise Mitigation in Digital Subscriber Lines: The State-of-the-Art and Research Opportunities |
152 | -- | 159 | Yuan Cao, Yongli Zhao, Jianquan Wang, Xiaosong Yu, Zhangchao Ma, Jie Zhang. KaaS: Key as a Service over Quantum Key Distribution Integrated Optical Networks |