Network traffic optimization architecture for scalability in academic inter-cloud computing environments

Shigetoshi Yokoyama, Atsushi Matsumoto, Nobukazu Yoshioka
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引用次数: 1

Abstract

In academic inter-cloud environments, virtual machines communicate with other virtual machines in different virtual L2 network segments through a virtual router. As virtual routers are deployed on certain physical machines, communication between virtual machines via virtual routers could not be an optimal in physical sense. We are proposing an academic inter-cloud architecture (AIC) [1] which consists of AIC compute and AIC storage. AIC is a hub of clouds and it provides compute physical resource on-demand for each cloud. It means that AIC provides extension to the clouds. The clouds meet in AIC. In that sense, the virtual machines in each cloud are physically close. However, the communication between virtual machines which are located in different clouds has another level optimization problem. The communication between the virtual machines is through the gateways of each cloud. The latency cloud be much smaller if we can optimize the route. For cloud scalability we may provide bare metal servers at geographically distributed manner but the network latency should be optimized by application requirements. We propose an architecture to solve these issues which has L3 function delegation mechanism to open flow switches to reduce network latency according to users' requirements for short cuts.
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面向学术跨云计算环境可扩展性的网络流量优化架构
在学术跨云环境中,虚拟机通过虚拟路由器与不同虚拟L2网段的其他虚拟机进行通信。由于虚拟路由器部署在某些物理机器上,虚拟机器之间通过虚拟路由器进行通信在物理意义上可能不是最优的。我们提出了一种学术的云间架构(AIC)[1],它由AIC计算和AIC存储组成。AIC是一个云中心,它为每个云按需提供计算物理资源。这意味着AIC提供了对云的扩展。云在AIC相遇。从这个意义上说,每个云中的虚拟机在物理上是接近的。然而,位于不同云中的虚拟机之间的通信存在另一个层面的优化问题。虚拟机之间的通信通过每个云的网关进行。如果我们能优化路由,延迟会小得多。对于云的可扩展性,我们可以以地理分布的方式提供裸机服务器,但网络延迟应根据应用程序需求进行优化。为了解决这些问题,我们提出了一种架构,根据用户对捷径的需求,采用L3功能委托机制开放流交换机,以减少网络延迟。
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