Network Functions Virtualization (NFV) allows flexibility, scalability, agility, and easy manageability of networks by leveraging the features of virtualization and cloud computing technologies. However, softwarization of network functions imposes many challenges. Reliability and latency are major challenges in NFV-enabled 5G networks that can lead to customer dissatisfaction and revenue loss. In general, redundancy is used to improve the reliability of communication services. However, redundancy requires the same amount of additional resources and thus increases cost. In this work, we address the reliability-aware, delay guaranteed, and resource efficient Service Function Chain (SFC) placement problem in softwarized 5G networks. First, we propose a novel SFC subchaining method to enhance the reliability of an SFC without backups. If reliability requirement is not met after subchaining method, we add backups to VNFs to meet the reliability requirement. Then, we formulate the reliable SFC placement problem as an Integer Linear Programming (ILP) problem in order to solve it optimally. Owing to high computational complexity of the ILP problem for solving large input instances, we propose a modified stable matching algorithm to provide near-optimal solution in polynomial time. By extensive simulations we show that our proposed solutions consume lesser physical resources compared to state-of-the-art solutions for provisioning reliable communication services.
翻译:网络功能虚拟化(NFV)使网络具有灵活性、可扩展性、灵活性和易于管理的能力,通过利用虚拟化和云计算技术的特征,使网络具有灵活性、可扩展性、灵活性和易于管理。然而,网络功能的软化化带来了许多挑战。在NFV驱动的5G网络中,可靠性和延迟度是主要的挑战,可能导致客户不满和收入损失。一般而言,冗余被用来提高通信服务的可靠性。然而,冗余需要同等数量的额外资源,从而增加成本。在这项工作中,我们解决软化5G网络的可靠性、延迟保障和资源高效服务功能链(SFC)配置问题。首先,我们提出一个新的SFC分链化方法,在没有备份的情况下提高SFC的可靠性。如果可靠性要求没有在子链化方法之后得到满足,我们为VNFFS增加备份,以满足可靠性要求。然后,我们将可靠的SFC配置问题作为 Integer线性规划(ILP) 问题,以便最佳地解决它。由于在解决大型投入的情况下,我们ILP的计算问题高度复杂,我们提议在接近于可靠时间的通信解决方案中,我们提议一个较小的多的模型化的模型,因此,我们提出一个较小的模型将显示我们较小的模型提供较小的模型,我们较小的模型,以提供较小的虚拟的模型为较小的系统。