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DISTANT: Distributed Trusted Authority-based key managemeNT for beyond 5G wireless mobile small cells

机译:遥远:以5G无线移动小单元格的基于信任的基于权限的密钥管理

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摘要

The 5G mobile network is embracing new technologies to keep providing network subscribers with a high Quality of Service (QoS). However, this has become increasingly difficult in the urban landscape as more devices are being connected and each device is requesting increasing amounts of data. Network operators rely on the small cell technology to maintain coverage and service for its subscribers, but this technology is incapable of mitigating the increasing workload on the network infrastructure and preventing the associated network delays. The next logical step is to cover the urban landscape with mobile small cells, since these take advantage of the dynamic network topology and optimizes network services in a cost-effective fashion while taking advantage of the high device density. However, the introduction of mobile small cells raises various security challenges. Cryptographic solutions are capable of solving these as long as they are supported by an appropriate key management scheme. In this article, we propose DISTANT: a DIStributed Trusted Authority-based key managemeNT scheme. This key management scheme is specifically designed to provide security in a network which takes advantage of the mobile small cell technology. The scheme relies on threshold secret sharing to decentralize trust and utilizes the self-generated certificates paradigm. Through an extensive security analysis and communication overhead evaluation, we conclude that our design provides an improved level of security and has a low communication overhead compared to previous works.
机译:5G移动网络采用新技术,以保持具有高质量服务(QoS)的网络用户。然而,随着更多设备正在连接并且每个设备都要求越来越多的数据,这在城市景观中越来越困难。网络运营商依靠小型电池技术,为其订阅者维护覆盖率和服务,但这种技术无法减轻网络基础架构上的增加工作量并防止相关的网络延迟。下一个逻辑步骤是通过移动小电池覆盖城市景观,因为这些利用动态网络拓扑并以经济高效的方式优化网络服务,同时利用高器件密度。然而,移动小型电池的引入提出了各种安全挑战。加密解决方案能够解决这些问题,只要它们由适当的密钥管理方案支持。在本文中,我们建议遥远:基于分布的基于可信任的权限的关键管理计划。该密钥管理方案专门设计为提供利用移动小型电池技术的网络中的安全性。该方案依赖于阈值秘密共享来分散信任,并利用自我生成的证书范例。通过广泛的安全分析和通信开销评估,我们得出的结论是,与以前的作品相比,我们的设计提供了改进的安全水平,并且具有低通信开销。

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