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5G Security Challenges and Opportunities: A System Approach

Ashutosh Dutta, Eman Hammad

20202020 IEEE 3rd 5G World Forum (5GWF)96 citationsDOI

Abstract

The digital transformation brought by 5G is redefining current models of end-to-end connectivity and service reliability to include security-by-design principles necessary to enable 5G to achieve its promise. 5G trustworthiness highlights the importance of embedding security capabilities from the very beginning while the 5G architecture is being defined and standardized. Security requirements need to overlay and permeate through the different layers of the 5G systems (physical, network, and application) as well as different parts of an E2E5G architecture within a risk management framework that takes into account the evolving security threats landscape. 5G presents a typical use-case of wireless communication and computer networking convergence, where 5G fundamental building blocks include components such as Software Defined Networks (SDN), Network Functions Virtualization (NFV) and the edge cloud. This convergence extends many of the security challenges and opportunities applicable to SDN/NFV and cloud to 5G networks. Thus, 5G security needs to consider additional security requirements (compared to previous generations) such as SDN controller security, hypervisor security, orchestrator security, cloud security, edge security, etc. At the same time, 5G networks offer security improvement opportunities that should be considered. Here, 5G architectural flexibility, programmability and complexity can be harnessed to improve resilience and reliability.

Topics & Concepts

Computer scienceCloud computing securitySecurity serviceComputer security modelComputer securityCloud computingSecurity through obscurityComputer networkResilience (materials science)Software security assuranceSecurity information and event managementInformation securityOperating systemThermodynamicsPhysicsBlockchain Technology Applications and SecuritySoftware-Defined Networks and 5GIoT and Edge/Fog Computing
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