Common Randomness: A Key Enabler of Trustworthy 6G Communication Systems

📅 2026-09-16
📈 Citations: 0
Influential: 0
📄 PDF
🤖 AI Summary
该文探讨了公共随机性在提升6G通信系统可信度中的作用,通过信息论两源模型生成CR,并分析其在不同通信场景下的应用。
📝 Abstract
Common randomness (CR) is a valuable resource for enhancing the trustworthiness of 6G communication systems. This article highlights the role of CR in improving scalability, security, and resilience in distributed 6G architectures. It provides an overview of information-theoretic two-source models for CR generation and summarizes known capacity results, together with their implications for practical systems under different communication settings, including one-way, two-way, helper-assisted, and interactive scenarios. Furthermore, the article explores CR-assisted secure identification over Gaussian channels as an application and highlights selected open research problems in CR generation for next-generation wireless systems. The article targets researchers and practitioners interested in bridging information-theoretic tools with emerging 6G communication systems.
Problem

Research questions and friction points this paper is trying to address.

Common Randomness
6G Communication Systems
Scalability
Security
Resilience
Innovation

Methods, ideas, or system contributions that make the work stand out.

Common Randomness
6G Communication Systems
Information-Theoretic Models
Secure Identification
Distributed Architectures
💼 Related Jobs
No related jobs found.
R
Rami Ezzine
Technical University of Munich, Munich, Germany
M
Moritz Wiese
Technical University of Munich, Munich, Germany
W
Wafa Labidi
Technical University of Munich, Munich, Germany
Christian Deppe
Christian Deppe
Technische Universität Braunschweig
Information TheoryQuantum Communication NetworksQuantum CommunicationPost Shannon Theory
Holger Boche
Holger Boche
Technische Universität München
Information TheorySignal ProcessingCommunication Theory