Intelligent and Collaborative Orchestration of Network Slices
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Xue-song Qiu | Shangguang Wang | M. Cheriet | Wenjing Li | Peng Yu | Ying Wang | Naling Li
[1] Dusit Niyato,et al. Slicing-Based Reliable Resource Orchestration for Secure Software-Defined Edge-Cloud Computing Systems , 2021, IEEE Internet of Things Journal.
[2] Shangguang Wang,et al. Cognitive Service Architecture for 6G Core Network , 2021, IEEE Transactions on Industrial Informatics.
[3] Ying-Chang Liang,et al. Network Slice Reconfiguration by Exploiting Deep Reinforcement Learning With Large Action Space , 2020, IEEE Transactions on Network and Service Management.
[4] Yonggang Wen,et al. Electricity Cost Minimization for Interruptible Workload in Datacenter Servers , 2020, IEEE Transactions on Services Computing.
[5] Hang Xu,et al. A Reinforcement Learning Method for Constraint-Satisfied Services Composition , 2020, IEEE Transactions on Services Computing.
[6] Salimur Choudhury,et al. Latency Aware VNF Deployment at Edge Devices for IoT Services: An Artificial Neural Network Based Approach , 2020, 2020 IEEE International Conference on Communications Workshops (ICC Workshops).
[7] Vahid Shah-Mansouri,et al. Deep Reinforcement Learning for Dynamic Reliability Aware NFV-Based Service Provisioning , 2019, 2019 IEEE Global Communications Conference (GLOBECOM).
[8] Purnima Murali Mohan,et al. Resilient VNF Placement for Service Chain Embedding in Diversified 5G Network Slices , 2019, 2019 IEEE Global Communications Conference (GLOBECOM).
[9] Deniz Gündüz,et al. Management and Orchestration of Virtual Network Functions via Deep Reinforcement Learning , 2019, IEEE Journal on Selected Areas in Communications.
[10] Abdelkader Outtagarts,et al. A Deep Reinforcement Learning Approach for VNF Forwarding Graph Embedding , 2019, IEEE Transactions on Network and Service Management.
[11] Hiroki Baba,et al. Soft-isolated Network Slicing Evaluation for 5G Low-Latency Services with Real Application Micro-burst , 2019, 2019 IEEE 2nd 5G World Forum (5GWF).
[12] Muntasir Raihan Rahman,et al. Deep Reinforcement Learning for Network Slicing with Heterogeneous Resource Requirements and Time Varying Traffic Dynamics , 2019, 2019 15th International Conference on Network and Service Management (CNSM).
[13] Ning Zhang,et al. Reinforcement Learning Based VNF Scheduling with End-to-End Delay Guarantee , 2019, 2019 IEEE/CIC International Conference on Communications in China (ICCC).
[14] Fangming Liu,et al. Adaptive Interference-Aware VNF Placement for Service-Customized 5G Network Slices , 2019, IEEE INFOCOM 2019 - IEEE Conference on Computer Communications.
[15] Lei Shi,et al. Hard-isolation for Network Slicing , 2019, IEEE INFOCOM 2019 - IEEE Conference on Computer Communications Workshops (INFOCOM WKSHPS).
[16] Tram Truong-Huu,et al. Service Chain Embedding for Diversified 5G Slices With Virtual Network Function Sharing , 2019, IEEE Communications Letters.
[17] Ashraf Matrawy,et al. Towards Secure Slicing: Using Slice Isolation to Mitigate DDoS Attacks on 5G Core Network Slices , 2019, 2019 IEEE Conference on Communications and Network Security (CNS).
[18] Tarik Taleb,et al. Towards Modeling Cross-Domain Network Slices for 5G , 2018, 2018 IEEE Global Communications Conference (GLOBECOM).
[19] Pantelis A. Frangoudis,et al. Latency and Availability Driven VNF Placement in a MEC-NFV Environment , 2018, 2018 IEEE Global Communications Conference (GLOBECOM).
[20] Swades De,et al. Joint VNF Placement and CPU Allocation in 5G , 2018, IEEE INFOCOM 2018 - IEEE Conference on Computer Communications.
[21] Xiangming Wen,et al. A Service-Oriented Deployment Policy of End-to-End Network Slicing Based on Complex Network Theory , 2018, IEEE Access.
[22] Tarik Taleb,et al. Network Slicing and Softwarization: A Survey on Principles, Enabling Technologies, and Solutions , 2018, IEEE Communications Surveys & Tutorials.
[23] Ashraf Matrawy,et al. Optimal Slice Allocation in 5G Core Networks , 2018, IEEE Networking Letters.
[24] Raouf Boutaba,et al. Delay-aware VNF placement and chaining based on a flexible resource allocation approach , 2017, 2017 13th International Conference on Network and Service Management (CNSM).
[25] Michail Matthaiou,et al. ENORM: A Framework For Edge NOde Resource Management , 2017, IEEE Transactions on Services Computing.
[26] Dimitrios P. Pezaros,et al. On the Latency Benefits of Edge NFV , 2017, 2017 ACM/IEEE Symposium on Architectures for Networking and Communications Systems (ANCS).
[27] Mohammed Samaka,et al. Optimal virtual network function placement in multi-cloud service function chaining architecture , 2017, Comput. Commun..
[28] Xin Su,et al. Orchestrating for deployment of network slicing , 2017, 2017 Wireless Telecommunications Symposium (WTS).
[29] Djamal Zeghlache,et al. Scalable and cost-efficient algorithms for VNF chaining and placement problem , 2017, 2017 20th Conference on Innovations in Clouds, Internet and Networks (ICIN).
[30] Jiyan Sun,et al. VNF-FG design and VNF placement for 5G mobile networks , 2017, Science China Information Sciences.
[31] Filip De Turck,et al. Customizable Function Chains: Managing Service Chain Variability in Hybrid NFV Networks , 2016, IEEE Transactions on Network and Service Management.
[32] Guy Pujolle,et al. QoS-Aware VNF Placement Optimization in Edge-Central Carrier Cloud Architecture , 2016, 2016 IEEE Global Communications Conference (GLOBECOM).
[33] Leandros Tassiulas,et al. SLA-Driven VM Scheduling in Mobile Edge Computing , 2016, 2016 IEEE 9th International Conference on Cloud Computing (CLOUD).
[34] Alex Graves,et al. Asynchronous Methods for Deep Reinforcement Learning , 2016, ICML.
[35] Kin K. Leung,et al. Dynamic service migration in mobile edge-clouds , 2015, 2015 IFIP Networking Conference (IFIP Networking).
[36] Otto Carlos Muniz Bandeira Duarte,et al. Orchestrating Virtualized Network Functions , 2015, IEEE Transactions on Network and Service Management.
[37] Alex Graves,et al. Playing Atari with Deep Reinforcement Learning , 2013, ArXiv.
[38] Andrew W. Moore,et al. Reinforcement Learning: A Survey , 1996, J. Artif. Intell. Res..
[39] Ellen W. Zegura,et al. How to model an internetwork , 1996, Proceedings of IEEE INFOCOM '96. Conference on Computer Communications.