Realizing Multi-Access Edge Computing Feasibility: Security Perspective

Pasika Ranaweera, A. Jurcut, Madhusanka Liyanage
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引用次数: 28

Abstract

Internet of Things (IoT) and 5G are emerging technologies that prompt a mobile service platform capable of provisioning billions of communication devices which enable ubiquitous computing and ambient intelligence. These novel approaches are guaranteeing gigabit-level bandwidth, ultra-low latency and ultra-high storage capacity for their subscribers. To achieve these limitations, ETSI has introduced the paradigm of Multi-Access Edge Computing (MEC) for creating efficient data processing architecture extending the cloud computing capabilities in the Radio Access Network (RAN). Despite the gained enhancements to the mobile network, MEC is subjected to security challenges raised from the heterogeneity of IoT services, intricacies in integrating virtualization technologies, and maintaining the performance guarantees of the mobile networks (i.e. 5G). In this paper, we are identifying the probable threat vectors in a typical MEC deployment scenario that comply with the ETSI standards. We analyse the identified threat vectors and propose solutions to mitigate them.
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实现多接入边缘计算的可行性:安全视角
物联网(IoT)和5G是新兴技术,它们促使移动服务平台能够提供数十亿台通信设备,从而实现无处不在的计算和环境智能。这些新颖的方法保证了千兆级的带宽、超低的延迟和超高的存储容量。为了实现这些限制,ETSI引入了多访问边缘计算(MEC)范式,用于创建高效的数据处理架构,扩展无线接入网(RAN)中的云计算功能。尽管移动网络得到了增强,但MEC仍面临着物联网服务的异构性、集成虚拟化技术的复杂性以及维持移动网络(即5G)性能保证所带来的安全挑战。在本文中,我们在符合ETSI标准的典型MEC部署场景中识别可能的威胁向量。我们分析已识别的威胁向量,并提出解决方案来减轻它们。
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