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SLA-aware Job Migration in Grid Environments

机译:网格环境中的SLA感知作业迁移

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摘要

Grid Computing promises an efficient sharing of world-wide distributed resources, ranging from hardware, software, expert knowledge to special I/O devices. However, although the main Grid mechanisms are already developed or are currently addressed by tremendous research effort, the Grid environment still suffers from a low acceptance in different user communities. Beside difficulties regarding an intuitive and comfortable resource access, various problems related to the reliability and the Quality-of-Service while using the Grid exist. Users should be able to rely, that their jobs will have certain priority at the remote Grid site and that they will be finished upon the agreed time regardless of any provider problems. Therefore. QoS issues have to be considered in the Grid middleware but also in the local resource management systems at the Grid sites. However, most of the currently used resource management systems are not suitable for SLAs, as they do not support resource reservation and do not offer mechanisms for job checkpointing/migration respectively. The latter are mandatory for Grid providers as rescue anchor in case of system failures or system overload. This paper focuses on SLA-aware job migration and presents a work, which is being performed in the EU supported project HPC4U.
机译:网格计算有效地共享世界范围的分布式资源,从硬件,软件,专业知识到特殊I / O设备。然而,尽管已经通过巨大的研究工作已经开发或目前正在开发主电网机制,但电网环境仍然遭受不同的用户社区的较低。除了有关直观和舒适的资源访问的困难之外,还存在与使用网格的可靠性和服务质量相关的各种问题。用户应该依赖,他们的工作将在远程网站站点上有一定的优先级,并且无论任何提供者问题如何,它们都将完成约定的时间。所以。在网格中间件中必须考虑QoS问题,但也必须在网格站点的本地资源管理系统中进行。但是,大多数当前使用的资源管理系统不适合SLA,因为它们不支持资源预留,并且不分别为作业检查点/迁移提供机制。在系统故障或系统过载的情况下,后者对于网格提供商是救援锚的必需品。本文侧重于SLA感知作业迁移,并呈现在欧盟支持的项目HPC4U中执行的工作。

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