Towards an Environment Supporting Resilience, High-Availability, Reproducibility and Reliability for Cloud Applications

V. Stankovski, S. Taherizadeh, I. Taylor, Andrew C. Jones, C. Mastroianni, B. Becker, H. Suhartanto
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引用次数: 4

Abstract

This paper presents a design study of an environment that would provide for resilience, high-availability, reproducibility and reliability of Cloud-based applications. The approach involves the use of a resilient container overlay, which provides tools for tracking and optimizing container placement during the course of a scientific experiment execution. The system is designed to detect failure and current performance bottlenecks and be capable of migrating running containers on the fly to servers more optimal for their execution. This work is in the design phase and therefore in this paper, we outline the proposed architecture of system and identify existing container management and migration tools that can be used in the implementation, where appropriate.
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迈向支持云应用弹性、高可用性、可再现性和可靠性的环境
本文介绍了一个环境的设计研究,该环境将提供基于云的应用程序的弹性、高可用性、可再现性和可靠性。该方法涉及使用弹性容器覆盖,它提供了在科学实验执行过程中跟踪和优化容器放置的工具。该系统旨在检测故障和当前的性能瓶颈,并能够将运行中的容器动态迁移到更适合其执行的服务器上。这项工作处于设计阶段,因此在本文中,我们概述了系统的拟议架构,并确定了可以在适当的情况下在实现中使用的现有容器管理和迁移工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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