摘要
传统的高能物理计算系统基于物理机集群,主要通过Torque、Condor、LSF等资源管理和作业调度系统将作业调度到物理机器上运行,缺少对虚拟化计算的接口支持。我们选取OpenStack作为底层虚拟化平台,设计并实现上层调度系统与OpenStack之间的桥梁,采用推拉结合的作业运行方式,构建虚拟计算集群。
Traditional high-energy physics computing system is based on the physical machine clusters, it runs the jobs on physical machines through resource management and job scheduling by the systems such as Torque, Condor, LSF, etc., which lack the interface support to virtualization computing. In this paper, we use OpenStack as the underlying virtualization platform, designed and implemented the bridge between the scheduling system and OpenStack, and adopt a combination of push-pull operation mode to build a virtual computing cluster.
作者
李海波
黄秋兰
石京燕
程耀东
Li Haibo Huang Qiulan Shi Jingyan Cheng Yaodong(Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China)
出处
《科研信息化技术与应用》
2016年第3期25-30,共6页
E-science Technology & Application
基金
国家自然科学基金(11305192)
中国科学院高能物理研究所谢家麟基金(542016IHEPZZBS701)
国家自然科学青年基金(11605223)