用于多租户的软件定义的可扩展和自治架构

M. F. Ahmed, C. Talhi, M. Pourzandi, M. Cheriet
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引用次数: 6

摘要

分布式数据中心网络(DCNs)的可扩展性一直是网络研究和工业界所追求的目标。为了支持多租户动态增长的需求,网络提供商必须复制或共享虚拟资源,以满足租户的请求。然而,当前的软件定义网络(SDN)架构存在主要缺陷,包括缺乏可扩展性和跨虚拟租户网络(VTN)通信。它们只依赖于控制平面的灵活性,而忽视了管理平面的重要作用。SDN可扩展性瓶颈直接影响到网络/VTN的可扩展性。面对快速增长的网络,人们普遍认为未来的网络将需要更多的能力,如自我意识、自我控制和自我管理。这些挑战的核心是为多租户提供弹性隔离,并让租户参与管理和控制,以达到可伸缩性目标并降低大型dcn管理操作的复杂性。为了应对这些挑战,开放虚拟网络管理和安全(Open vNMS)被提出,以支持透明的多租户,同时解决网络和VTN的可扩展性。基于弹性L2隔离,利用SDN组件的灵活性,我们设计了一个自主架构,为网络提供自我控制、自我管理和自适应能力。实验结果表明,该设计可以忽略开销,保证了网络性能。
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A Software-Defined Scalable and Autonomous Architecture for Multi-tenancy
Scalability for distributed Data Center Networks (DCNs) has long been a goal of the network research and industrial community. To support dynamically increasing demands from multi-tenants, the network providers have to duplicate or share virtual resources for satisfying tenants' requests. However, current Software-Defined Networking (SDN) architectures have major drawbacks including lack of scalability and cross Virtual Tenant Network (VTN) communication. They rely only on the flexibility of control plane and neglect management plane important role. SDN scalability bottleneck affects directly the network/VTN scalability. In front of the fast growing network, it is widely accepted that the network of the future will require more capabilities such as self-awareness, self-control and self-management. At the core of these challenges is providing elastic isolation for multi-tenancy and involving tenant in management and control to reach the scalability objective and reduce the complexity of management operations of large DCNs. To address these challenges, the Open virtual Network Management and Security (Open vNMS) is proposed for supporting transparent multi-tenancy while both network and VTN scalability is solved. Basing on elastic L2 isolation using SDN components' flexibility, we design an autonomic architecture to provide self-control, self-management and self-adaptive capabilities for the network. The experiment results showed that the proposed design offers negligible overhead and guarantees the network performance.
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