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Resource management with hoses: point-to-cloud services for virtual private networks

机译:用软管进行资源管理:虚拟专用网的点到云服务

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As IP technologies providing both tremendous capacity and the ability to establish dynamic security associations between endpoints emerge, virtual private networks (VPNs) are going through dramatic growth. The number of endpoints per VPN is growing and the communication pattern between endpoints is becoming increasingly hard to predict. Consequently, users are demanding dependable, dynamic connectivity between endpoints, with the network expected to accommodate any traffic matrix, as long as the traffic to the endpoints does not overwhelm the capacity of the respective ingress and egress links. We propose a new service interface, termed a hose, to provide the appropriate performance abstraction. A hose is characterized by the aggregate traffic to and from one endpoint in the VPN to a set of other endpoints in the VPN, and by an associated performance guarantee. Hoses provide important advantages to a VPN customer: (1) flexibility to send traffic to a set of endpoints without having to specify the detailed traffic matrix, and (2) reduction in the size of access links through multiplexing gains obtained from the natural aggregation of the flows between endpoints. As compared with the conventional point-to-point (or customer pipe) model for managing quality of service (QoS), hoses provide reduction in the state information a customer must maintain. On the other hand, hoses would appear to increase the complexity of the already difficult problem of resource management to support QoS. To manage network resources in the face of this increased uncertainty, we consider both conventional statistical multiplexing techniques, and a new resizing technique based on online measurements. To study these performance issues, we run trace-driven simulations, using traffic derived from AT&T's voice network and from a large corporate data network. From the customer's perspective, we find that aggregation of traffic at the hose level provides significant multiplexing gains. From the provider's perspective, we find that the statistical multiplexing and resizing techniques deal effectively with uncertainties about the traffic, providing significant gains over the conventional alternative of a mesh of statically sized customer pipes between endpoints.
机译:随着IP技术同时提供巨大的能力和在端点之间建立动态安全关联的能力的兴起,虚拟专用网(VPN)正经历着巨大的增长。每个VPN的端点数量正在增长,并且端点之间的通信模式变得越来越难以预测。因此,用户要求端点之间具有可靠的动态连接,并且网络要容纳任何流量矩阵,只要到端点的流量不超过相应入口和出口链路的容量即可。我们提出了一个新的服务接口,称为软管,以提供适当的性能抽象。软管的特征是往返于VPN中的一个端点到VPN中的一组其他端点的总流量,以及相关的性能保证。软管为VPN客户提供了重要的优势:(1)无需指定详细的流量矩阵即可灵活地将流量发送到一组端点,以及(2)通过多路复用从自然聚合获得的增益来减少访问链路的大小。端点之间的流。与用于管理服务质量(QoS)的常规点对点(或客户管道)模型相比,软管减少了客户必须维护的状态信息。另一方面,软管似乎增加了本来就难以支持QoS的资源管理问题的复杂性。为了在不确定性增加的情况下管理网络资源,我们同时考虑了传统的统计复用技术和基于在线测量的新的调整大小技术。为了研究这些性能问题,我们使用来自AT&T语音网络和大型企业数据网络的流量运行跟踪驱动的模拟。从客户的角度来看,我们发现软管级的流量聚合可显着提高复用效率。从提供商的角度来看,我们发现统计复用和调整大小的技术有效地处理了流量的不确定性,与端点之间的静态大小客户管道网格的传统替代方法相比,可提供明显的收益。

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