Optimal data backup policies for information systems subject to sudden failure

IF 1.8 Q3 ENGINEERING, INDUSTRIAL
Salih Tekin, K. Bicakci, Ozgur Mersin, Gulnur Neval Erdem, Abdulkerim Canbay, Y. Uzunay
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引用次数: 2

Abstract

PurposeWith the irresistible growth in digitization, data backup policies become essential more than ever for organizations seeking to improve reliability and availability of organizations' information systems. However, since backup operations do not come free, there is a need for a data-informed policy to decide how often and which type of backups should be taken. In this paper, the authors present a comprehensive mathematical framework to explore the design space for backup policies and to optimize backup type and interval in a given system. In the authors' framework, three separate cost factors related to the backup process are identified: backup cost, recovery cost and data loss cost. The objective function has a multi-criteria structure leading to a backup policy minimizing a weighed function of these factors. To formalize the cost and objective functions, the authors get help from renewal theory in reliability modeling. The authors' optimization framework also formulates mixed policies involving both full and incremental backups. Through numerical examples, the authors show how the authors' optimization framework could facilitate cost-saving backup policies.Design/methodology/approachThe methodology starts with designing different backup policies based on system parameters. Each constructed policy is optimized in terms of backup period using renewal theory. After selecting the best back-up policy, the results are demonstrated through numerical studies.FindingsData backup polices that are tailored to system parameters can result in significant gains for IT (Information Technology) systems. Collecting the necessary parameters to design intelligent backup policies can also help managers understand managers' systems better. Designed policies not only provides the frequency of back up operations, but also the type of backups.Originality/valueThe original contribution of this study is the explicit construction and determination of the best backup policies for IT systems that are prone to failure. By applying renewal theory in reliability, the authors present a mathematical framework for the joint optimization of backup cost factors, i.e. backup cost, recovery time cost and data loss cost.
突发故障信息系统的最优数据备份策略
随着数字化的迅猛发展,数据备份策略对于寻求提高组织信息系统可靠性和可用性的组织来说变得比以往任何时候都更加重要。但是,由于备份操作不是免费的,因此需要一个数据知情的策略来决定应该多久进行一次备份,以及采取哪种类型的备份。本文提出了一个全面的数学框架,用于研究给定系统中备份策略的设计空间,以及优化备份类型和间隔。在作者的框架中,确定了与备份过程相关的三个单独的成本因素:备份成本、恢复成本和数据丢失成本。目标函数具有多准则结构,导致备份策略最小化这些因素的加权函数。为了形式化成本函数和目标函数,作者借鉴了可靠性建模中的更新理论。作者的优化框架还制定了包含完整备份和增量备份的混合策略。通过数值算例,说明了本文提出的优化框架如何促进节约成本的备份策略。设计/方法/方法首先根据系统参数设计不同的备份策略。利用更新理论对构建的策略进行备份周期优化。选择最佳备份策略后,通过数值研究对结果进行了验证。发现根据系统参数定制的数据备份策略可以为IT(信息技术)系统带来显著的收益。收集必要的参数来设计智能备份策略,也可以帮助管理者更好地了解自己的系统。设计策略不仅提供了备份操作的频率,还提供了备份的类型。原创性/价值本研究的原创性贡献在于明确构建并确定了容易发生故障的IT系统的最佳备份策略。将更新理论应用于可靠性,提出了备份成本、恢复时间成本和数据丢失成本联合优化的数学框架。
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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来源期刊
Journal of Quality in Maintenance Engineering
Journal of Quality in Maintenance Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
4.00
自引率
13.30%
发文量
24
期刊介绍: This exciting journal looks at maintenance engineering from a positive standpoint, and clarifies its recently elevatedstatus as a highly technical, scientific, and complex field. Typical areas examined include: ■Budget and control ■Equipment management ■Maintenance information systems ■Process capability and maintenance ■Process monitoring techniques ■Reliability-based maintenance ■Replacement and life cycle costs ■TQM and maintenance
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