Multi-Access or Mobile Edge Computing (MEC) is being deployed by 4G/5G operators to provide computational services at lower latencies. Federating MECs across operators expands capability, capacity, and coverage but gives rise to two issues - third-party authentication and application mobility - for continuous service during roaming without re-authentication. In this work, we propose a Federated State transfer and 3rd-party Authentication (FS3A) mechanism that uses a transparent proxy to transfer the information of both authentication and application state across operators to resolve these issues. The FS3A proxy is kept transparent, with virtual counterparts, to avoid any changes to the existing MEC and cellular architectures. FS3A provides users with a token, when authenticated by an MEC, which can be reused across operators for faster authentication. Prefetching of subscription and state is also proposed to further reduce the authentication and application mobility latencies. We evaluated FS3A on an OpenAirInterface (OAI)-based testbed and the results show that token reuse and subscription prefetching reduce the authentication latency by 53-65%, compared to complete re-authentication, while state prefetching reduces application mobility latency by 51-91%, compared to no prefetching. Overall, FS3A reduces the service interruption time by 33%, compared to no token reuse and prefetching.
翻译:4G/5G操作员正在部署多入或移动边缘计算系统(MEC) 4G/5G操作员正在部署多入或移动边缘计算器(MEC), 以便在低延迟时提供计算服务。 运营商的联邦MEC扩大能力、能力和覆盖面,但产生两个问题:在漫游期间,无需再认证即可持续提供服务,包括第三方认证和应用程序机动性。 在这项工作中,我们提议采用一个联邦转让和第三方认证(FS3A)机制,使用透明的代理来在运营商之间传输认证和应用州的信息,以解决这些问题。 FS3A代理与虚拟对应方保持透明,以避免现有MEC和移动电话结构发生任何变化。 FS3A在获得MEC认证时为用户提供了一种象征,可以再利用这些象征,供操作者在漫漫漫漫漫漫,无需再认证。 我们还提议,在订阅之前和州进一步减少认证和应用程序延迟。 我们评估了基于OFS3A(Ofif Interf) 的测试床,结果显示,将认证前延迟使用和订阅时间减少53-65 %,在不伸缩之前,在不伸缩应用之前,在不伸缩性应用之前减少整个服务期间,在不伸缩前减少,在不伸缩前,在不伸缩使用前减少为51%。