Protecting virtual networks with DRONE

S. R. Chowdhury, Reaz Ahmed, Md Mashrur Alam Khan, Nashid Shahriar, R. Boutaba, J. Mitra, Feng Zeng
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引用次数: 18

Abstract

Network virtualization is enabling infrastructure providers (InPs) to offer new services to higher level service providers (SPs). InPs are usually bound by Service Level Agreements (SLAs) to ensure various levels of resource availability for different SPs' virtual networks (VNs). They provision redundant backup resources while embedding an SP's VN request to conform to the SLAs during physical failures in the infrastructure. An extreme of this backup resource provisioning is to reserve a dedicated backup of each element in an SP's VN request. Such dedicated protection scheme can enable an InP to ensure fast VN recovery, thus, providing high uptime guarantee to the SPs. In this paper, we study the 1 + 1-Protected Virtual Network Embedding (1 + 1-ProViNE) problem. We propose Dedicated Protection for Virtual Network Embedding (DRONE), a suite of solutions to the 1 + 1-ProViNE. DRONE includes an Integer Linear Programming (ILP) formulation for optimal solution (OPT-DRONE) and a heuristic (FAST-DRONE) to tackle the computational complexity in computing the optimal solution. Trace driven simulations show that FAST-DRONE allocates only 14.3% extra backup resources on average compared to the optimal solution, while executing 200-12000x faster.
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用DRONE保护虚拟网络
网络虚拟化使基础设施提供商(inp)能够向更高级别的服务提供商(sp)提供新服务。inp通常受到服务水平协议(sla)的约束,以确保不同服务提供商的虚拟网络(VNs)具有不同级别的资源可用性。它们提供冗余备份资源,同时嵌入服务提供商的VN请求,以便在基础设施发生物理故障时符合sla。这种备份资源配置的一个极端是为服务提供商的VN请求中的每个元素保留一个专用备份。这种专用的保护方案可以使InP保证VN的快速恢复,从而为sp提供高正常运行时间的保证。本文研究了1 + 1保护的虚拟网络嵌入(1 + 1 provine)问题。我们提出了一套针对1 + 1- provine的解决方案——Dedicated Protection for Virtual Network Embedding (DRONE)。无人机包括一个整数线性规划(ILP)最优解公式(OPT-DRONE)和一个启发式(FAST-DRONE)来解决计算最优解的计算复杂性。跟踪驱动的模拟表明,与最优解决方案相比,FAST-DRONE平均只分配了14.3%的额外备份资源,而执行速度却快了200-12000倍。
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