Private VNFs for collaborative multi-operator service delivery: An architectural case

G. Biczók, Balázs Sonkoly, Nikolett Bereczky, C. Boyd
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引用次数: 5

Abstract

Flexible service delivery is a key requirement for 5G network architectures. This includes the support for collaborative service delivery by multiple operators, when an individual operator lacks the geographical footprint or the available network, compute or storage resources to provide the requested service to its customer. Network Function Virtualisation is a key enabler of such service delivery, as network functions (VNFs) can be outsourced to other operators. Owing to the (partial lack of) contractual relationships and co-opetition in the ecosystem, the privacy of user data, operator policy and even VNF code could be compromised. In this paper, we present a case for privacy in a VNF-enabled collaborative service delivery architecture. Specifically, we show the promise of homomorphic encryption (HE) in this context and its performance limitations through a proof of concept implementation of an image transcoder network function. Furthermore, inspired by application-specific encryption techniques, we propose a way forward for private, payload-intensive VNFs.
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用于协作多运营商服务交付的私有VNFs:一个架构案例
灵活的服务交付是5G网络架构的关键要求。这包括当单个运营商缺乏地理覆盖或可用网络、计算或存储资源来为客户提供所需服务时,对多个运营商协同服务交付的支持。网络功能虚拟化是这种服务交付的关键推动者,因为网络功能(vnf)可以外包给其他运营商。由于生态系统中(部分缺乏)合同关系和合作竞争,用户数据的隐私、运营商政策甚至VNF代码都可能受到损害。在本文中,我们提出了一个支持vnf的协作服务交付体系结构中的隐私案例。具体来说,我们通过图像转码器网络功能的概念验证实现,展示了同态加密(HE)在这种情况下的前景及其性能限制。此外,受特定于应用程序的加密技术的启发,我们提出了一种用于私有、有效负载密集型VNFs的方法。
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