Nowadays, most telecommunication services adhere to the Service Function Chain (SFC) paradigm, where network functions are implemented via software. In particular, container virtualization is becoming a popular approach to deploy network functions and to enable resource slicing among several tenants. The resulting infrastructure is a complex system composed by a huge amount of containers implementing different SFC functionalities, along with different tenants sharing the same chain. The complexity of such a scenario lead us to evaluate two critical metrics: the steady-state availability (the probability that a system is functioning in long runs) and the latency (the time between a service request and the pertinent response). Consequently, we propose a latency-driven availability assessment for multi-tenant service chains implemented via Containerized Network Functions (CNFs). We adopt a multi-state system to model single CNFs and the queueing formalism to characterize the service latency. To efficiently compute the availability, we develop a modified version of the Multidimensional Universal Generating Function (MUGF) technique. Finally, we solve an optimization problem to minimize the SFC cost under an availability constraint. As a relevant example of SFC, we consider a containerized version of IP Multimedia Subsystem, whose parameters have been estimated through fault injection techniques and load tests.
翻译:目前,大多数电信服务都遵循服务功能链(SFC)模式,即网络功能通过软件实施;特别是,集装箱虚拟化正在成为部署网络功能和使若干租户能够进行资源残割的流行办法;由此形成的基础设施是一个复杂的系统,由大量集装箱组成,这些集装箱可实施不同的SFC功能,以及不同的租户共享同一链;这种情景的复杂性导致我们评价两个关键指标:稳定状态的可用性(系统运行时间长的概率)和延迟度(服务请求和相关回应之间的时间)。因此,我们提议对通过集装箱化网络功能实施的多租户服务链进行由延迟力驱动的可用性评估。我们采用多州系统,以单一CNFS和排队形式模式来确定服务惯性。为了有效地计算可用性,我们开发了经修改的“多层面通用 General化功能”技术版本。最后,我们解决了优化问题,以在可获性制约下最大限度地降低SFCFC成本。作为相关的一个例子,我们考虑的是,通过SFCFC、我们考虑通过集装箱测试系统估算了一种集装箱式的系统。