基于带宽和能量的可靠虚拟软件定义网络的状态感知分配

R. Gomes, L. Bittencourt, E. Madeira, E. Cerqueira, M. Gerla
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引用次数: 10

摘要

即使经过了几十年的发展,互联网也没有为用户提供服务质量(QoS)的保证。为了缓和这种情况,客户与其互联网服务提供商(isp)协商服务水平协议(sla),其中可靠性和可用带宽是互联网服务的关键要求。另一方面,互联网服务供应商的目标是减少能源消耗,以提供服务和提供绿色环境。软件定义网络(sdn)和虚拟网络(VNs)的混合,称为虚拟软件定义网络(VSDN),作为处理客户端和提供者视角的可实现选项而出现。在此背景下,本文提出了两种结合可靠性、带宽和能效的vsdn分配算法,并在分配过程中考虑当前网络状态,调整各方面的重要性。结果表明,该算法在分配可靠的vsdn方面是有效的,同时提高了ISP的能源效率和带宽利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
State-aware allocation of reliable Virtual Software Defined Networks based on bandwidth and energy
Even after decades, the Internet does not provide Quality of Service (QoS) guarantee for the users. In order to soften such situation, clients negotiate Service Level Agreements (SLAs) with their Internet Service Providers (ISPs), where reliability and available bandwidth are key requirements for Internet services. On the other hand, the ISPs aim to decrease the energy consumption to deliver their services and provide a green environment. The mixing of Software Defined Networks (SDNs) and Virtual Networks (VNs), called Virtual Software Defined Network (VSDN), arises as a realizable option to deal with both client and provider perspectives. Within this context, this paper proposes two algorithms to allocate VSDNs combining reliability, bandwidth, and energy efficiency, considering the current network state to adjust the importance of each of these aspects during the allocation process. The results show the effectiveness of the proposed algorithms in allocating reliable VSDNs, while improving the energy efficiency and bandwidth usage of the ISP.
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