Agile Orchestration at Will: An Entire Smart Service-Based Security Architecture Towards 6G
Zhuoran Duan, Guoshun Nan, Rushan Li, Zijun Wang, Lihua Xiong, Chaoying Yuan, Guorong Liu, Hui Xu, Qimei Cui, Xiaofeng Tao, Tony Q.S. Quek

TL;DR
This paper proposes ES3A, a comprehensive, flexible, and resilient security architecture for 6G networks that leverages smart orchestration and real-world prototyping to address diverse threats and requirements.
Contribution
It introduces a novel security architecture for 6G that integrates service-based security, end-to-end protection, and smart automation with a two-stage orchestration mechanism.
Findings
Prototype on SDR demonstrates effectiveness.
Architecture offers tailored security strategies.
Shows superiority over existing approaches.
Abstract
The upcoming 6G will fundamentally reshape mobile networks beyond communications, unlocking a multitude of applications that were once considered unimaginable. Meanwhile, security and resilience are especially highlighted in the 6G design principles. However, safeguarding 6G networks will be quite challenging due to various known and unknown threats from highly heterogeneous networks and diversified security requirements of distinct use cases, calling for a comprehensive re-design of security architecture. This motivates us to propose ES3A (Entire Smart Service-based Security Architecture), a novel security architecture for 6G networks. Specifically, we first discuss six high-level principles of our ES3A that include hierarchy, flexibility, scalability, resilience, endogeny, and trust and privacy. With these goals in mind, we then introduce three guidelines from a deployment…
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Taxonomy
TopicsSoftware-Defined Networks and 5G · Advanced Wireless Communication Technologies · IoT and Edge/Fog Computing
