始终在线:高可用性云应用程序的架构

M. Anand
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引用次数: 4

摘要

随着向云计算的转变,应用程序可用性成为一个值得关注的问题。为了解决各种硬件和软件问题,必须关闭云应用程序。即使冗余使应用程序免受硬件错误的影响,软件更新和补丁仍然需要在更新期间关闭服务。组织通常使用低活动时间来进行软件更新。本文提出了构建无需关闭服务即可更新的高可用性云应用程序的体系结构。本文讨论了如何将应用程序的各种组件构建为请求接收节点和请求处理节点。请求接收者接收请求,请求处理器处理请求。我们提供了一种机制来检测是否有任何工作或响应节点工作不佳,并允许用户保存状态并重新启动该特定节点。最后,我们给出了这些节点可以单独或批量升级的场景。这减少了对数据中心管理员和运维工程师的依赖,从而降低了成本。降低的成本可以直接使成本敏感的新兴市场受益。此外,这还改进了服务水平协议(SLA),因为应用程序不需要关闭以进行更新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Always On: Architecture for High Availability Cloud Applications
With the shift towards cloud computing, application availability becomes a valid concern. Cloud applications have to be taken down to address various hardware and software problems. Even thoug redundancy insulates applications from hardware errors, the software updates and patches still require the service to be taken down for the period of the update. Organizations generally use lowactivity hours to do software updates. This paper proposes architecture for constructing high-availability cloud applications that can be updated without shutting down the service. The paper discusses how the various components of application can be structured into request receiver nodes and request processor nodes. Request receivers receive the request and request processors act on the request. We provide a mechanism of detecting whether any worker or responder node is not working optimally and allow user to save the state and restart this particular node. Finally we present scenarios wherein these nodes can be upgraded either individually or in batches. This reduces dependency on administrators and operations engineers in data center thereby reducing the cost. The reduced cost can directly benefit cost sensitive emerging markets. Furthermore this improves the service level agreement (SLA) since the application will not have to be taken down for updates.
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