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Reliability of example data center designs selected by tier classification

机译:通过层分类选择的示例数据中心设计的可靠性

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When the concept of reliability began to formally become an integrated engineering approach in the 50''s, reliability was associated with failure rate. Today the term “reliability” is used as an umbrella definition covering a variety of subjects including availability, durability, quality and sometimes the function of the product. Reliability engineering was developed to quantify “how reliable” a component, product or system was when used in a specific application for a specific period of time. The data center industry has come to rely on “tier classifications” as presented in a number of papers by the Uptime Institute [1] as a gradient scale of data center configurations and requirements from least (Tier 1) to most reliable (Tier 4). This paper will apply the principles and modeling techniques of reliability engineering to specific examples that were selected based on gradient scale provided by the Tier Classifications and discuss the results. A review of the metrics of reliability engineering being used will also be included.
机译:当可靠性概念在50年代开始正式成为一种集成工程方法时,可靠性与故障率相关。今天,“可靠性”一词已被用作涵盖各种主题的概括性定义,包括可用性,耐用性,质量,有时还包括产品的功能。可靠性工程的发展是为了量化组件,产品或系统在特定时间段内在特定应用中使用时的“可靠性”。数据中心行业已经开始使用Uptime Institute [1]在多篇论文中提出的“层级分类”作为数据中心配置和要求从最小(第1层)到最可靠(第4层)的梯度规模。 。本文将可靠性工程的原理和建模技术应用于基于Tier分类提供的梯度标度选择的特定示例,并讨论结果。还包括对所使用的可靠性工程指标的回顾。

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