BENS−B5G: Blockchain-Enabled Network Slicing in 5G and Beyond-5G (B5G) Networks

Author:

Singh SaurabhORCID,Babu C. RajeshORCID,Ramana KadiyalaORCID,Ra In-HoORCID,Yoon ByungunORCID

Abstract

Fifth-generation (5G) technology is anticipated to allow a slew of novel applications across a variety of industries. The wireless communication of the 5G and Beyond-5G (B5G) networks will accommodate a wide variety of services and user expectations, including intense end-user connectivity, sub-1 ms delay, and a transmission rate of 100 Gbps. Network slicing is envisioned as an appropriate technique that can meet these disparate requirements. The intrinsic qualities of a blockchain, which has lately acquired prominence, mean that it is critical for the 5G network and B5G networks. In particular, the incorporation of blockchain technology into B5G enables the network to effectively monitor and control resource utilization and sharing. Using blockchain technology, a network-slicing architecture referred to as the Blockchain Consensus Framework is introduced that allows resource providers to dynamically contract resources, especially the radio access network (RAN) schedule, to guarantee that their end-to-end services are effortlessly executed. The core of our methodology is comprehensive service procurement, which offers the fine-grained adaptive allocation of resources through a blockchain-based consensus mechanism. Our objective is to have Primary User—Secondary User (PU—SU) interactions with a variety of services, while minimizing the operation and maintenance costs of the 5G service providers. A Blockchain-Enabled Network Slicing Model (BENS), which is a learning-based algorithm, is incorporated to handle the spectrum resource allocation in a sophisticate manner. The performance and inferences of the proposed work are analyzed in detail.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. An Enhanced Cross-Network-Slice Authentication Protocol for 5G;IEEE Transactions on Sustainable Computing;2023-10

2. Efficient Network Slicing with SDN and Heuristic Algorithm for Low Latency Services in 5G/B5G Networks;Sensors;2023-06-30

3. The Smart Network Management Automation Algorithm for Administration of Reliable 5G Communication Networks;Wireless Communications and Mobile Computing;2023-04-28

4. Machine Learning-Based Application for Predicting 5G/B5G Service;2023 13th International Conference on Cloud Computing, Data Science & Engineering (Confluence);2023-01-19

5. 5G Mobile Communication Network Site Planning And Regional Clustering Problems;2022 3rd International Conference on Information Science and Education (ICISE-IE);2022-11

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