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Resource Allocation Over EON-Based Infrastructures in a Network Virtualization Environment

机译:网络虚拟化环境中基于EON的基础架构上的资源分配

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Through network virtualization, new networking paradigms can be easily implemented by sharing a common physical infrastructure between different users and applications. A fundamental aspect in this environment is how to efficiently map virtual resources onto physical resources, frequently referred as virtual network embedding. Integer linear programming, heuristics and meta-heuristics have been commonly used to solve this problem. However, efficient allocation algorithms cannot ignore the main characteristics of the physical infrastructure. Simultaneously, elastic optical networks (EONs), are gaining attention of researchers and industry due to their high spectrum efficiency, flexibility and adaptability that allow higher transmission rates able to cope with the tremendous IP traffic demand of new applications and services. In this paper, we formulate a mathematical model for the offline virtual optical network embedding assuming a transparent EON-based infrastructure. We then propose a meta-heuristic (PRVONE) based on an optical-path ranking system to provide scalable embeddings within reasonable running time. We evaluate our work through extensive simulations and compare it with state-of-the-art approaches. Results show that PRVONE can achieve improvements in terms of acceptance ratio in all test case scenarios while providing load balanced embeddings.
机译:通过网络虚拟化,可以通过在不同用户和应用程序之间共享公用物理基础结构来轻松实现新的网络范例。这种环境中的一个基本方面是如何有效地将虚拟资源映射到物理资源上,通常称为虚拟网络嵌入。整数线性规划,试探法和元试探法已普遍用于解决此问题。但是,有效的分配算法不能忽略物理基础结构的主要特征。同时,由于弹性光网络(EON)的高频谱效率,灵活性和适应性,使得更高的传输速率能够满足新应用和服务对IP流量的巨大需求,正引起研究人员和业界的关注。在本文中,我们假设基于透明EON的基础结构,为离线虚拟光网络嵌入制定了数学模型。然后,我们提出一种基于光学路径排名系统的元启发式(PRVONE),以在合理的运行时间内提供可扩展的嵌入。我们通过广泛的模拟评估我们的工作,并将其与最新方法进行比较。结果表明,在提供负载均衡的嵌入的同时,PRVONE可以在所有测试用例场景中提高接受率。

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