AbstractDistributed clouds offer a choice of data center locations for providers to host their applications. In'/> Latency-aware virtual desktops optimization in distributed clouds
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Latency-aware virtual desktops optimization in distributed clouds

机译:分布式云中的延迟感知虚拟桌面优化

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AbstractDistributed clouds offer a choice of data center locations for providers to host their applications. In this paper, we consider distributed clouds that host virtual desktops which are then accessed by users through remote desktop protocols. Virtual desktops have different levels of latency-sensitivity, primarily determined by the actual applications running and affected by the end users’ locations. In the scenario of mobile users, even switching between 3G and WiFi networks affects the latency-sensitivity. We design VMShadow, a system to automatically optimize the location and performance of latency-sensitive VMs in the cloud. VMShadow performs black-box fingerprinting of a VM’s network traffic to infer the latency-sensitivity and employs both ILP and greedy heuristic based algorithms to move highly latency-sensitive VMs to cloud sites that are closer to their end users. VMShadow employs a WAN-based live migration and a new network connection migration protocol to ensure that the VM migration and subsequent changes to the VM’s network address are transparent to end-users. We implement a prototype of VMShadow in a nested hypervisor and demonstrate its effectiveness for optimizing the performance of VM-based desktops in the cloud. Our experiments on a private as well as the public EC2 cloud show that VMShadow is able to discriminate between latency-sensitive and insensitive desktop VMs and judiciously moves only those that will benefit the most from the migration. For desktop VMs with video activity, VMShadow improves VNC’s refresh rate by 90% by migrating virtual desktop to the closer location. Transcontinental remote desktop migrations only take about 4 min and our connection migration proxy imposes 13 μs overhead per packet.
机译: Abstract 分布式云为提供商托管其应用程序提供了数据中心位置的选择。在本文中,我们考虑了托管虚拟桌面的分布式云,然后用户可以通过远程桌面协议对其进行访问。虚拟桌面具有不同级别的延迟敏感度,主要由运行中的实际应用程序以及受最终用户位置影响的延迟决定。在移动用户的情况下,即使在3G和WiFi网络之间切换也会影响延迟敏感性。我们设计了VMShadow,该系统可自动优化云中对延迟敏感的VM的位置和性能。 VMShadow对VM的网络流量执行黑盒指纹识别,以推断延迟敏感性,并使用ILP和基于贪婪启发式的算法将高度延迟敏感的VM移至更接近最终用户的云站点。 VMShadow采用基于WAN的实时迁移和新的网络连接迁移协议,以确保VM迁移以及对VM网络地址的后续更改对最终用户是透明的。我们在嵌套的虚拟机管理程序中实现VMShadow的原型,并展示其在优化云中基于VM的桌面性能方面的有效性。我们在私有和公共EC2云上进行的实验表明,VMShadow能够区分对延迟敏感的桌面VM和对桌面不敏感的桌面VM,并明智地仅移动那些将从迁移中受益最大的虚拟机。对于具有视频活动的桌面VM,VMShadow通过将虚拟桌面迁移到更近的位置来将VNC的刷新率提高90%。跨大陆远程桌面迁移仅需大约4分钟,我们的连接迁移代理对每个数据包的开销为13μs。

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