Return
On Credibility-Based Service Function Chain Deployment
DOI:10.1109/OJCS.2021.3064887.png)
Abstract
En 中文
With the advancements of Software Defined Networking and Network Function Virtualization technologies, users can access the software-based service function chain (SFC), which is composed of multiple sequential virtual network function (VNF) nodes. Although SFC is more flexible and adaptive in terms of design and deployment, the security risks should not be underestimated. At present, there is a lack of security or risk assessment for SFC, and SFC deployments rarely take their security into account. However, vulnerabilities and risks can cause VNF node failure during operation, which can lead to issues such as disruptions in SFC service and user data leakage. This paper proposes the concept of SFC credibility, which quantifies the authenticity, availability, and reliability of the VNF nodes from both time and space dimensions. Then, a hierarchical credibility evaluation model is built such that VNF nodes can be selected for the user based on their trustworthiness. A credibility-based deployment strategy is further designed for SFC and the corresponding VNF forwarding graph. Furthermore, a comparative study with three existing deployment strategies has shown the advantages of the proposed method. The extensive experimental results demonstrate the improved trust degree and the acceptance rate of SFC with a limited budget.
Keywords:
Security
Reliability
Computer network reliability
Software
Service function chaining
Optimization
Telecommunication network reliability
Credibility evaluation
network function virtualization
service function chain deployment
virtual network function security
AI Summary
Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.
Journal
I
IF:
8.2
Papers:
425
Citations:
810
Organization
Cited Papers
Joint Optimization of Service Function Chaining and Resource Allocation in Network Function Virtualization
IEEE ACCESS
IF3.6
Control of Intracellular pH in Mammalian Liver at Hypothermia: Evidence for a Relationship with Energy Metabolism
Cryobiology
IF0

