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Optimal Redundancy Allocation for Disaster Recovery Planning in the Network Economy

机译:网络经济中灾难恢复规划的最佳冗余分配

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In the present network economy, businesses are becoming increasingly reliant on information technology (IT) to perform their operations and exchange information with business partners. This heavy dependence on IT, however, poses a potential threat for an organization. When disasters strike and cause malfunction to its computing and communicating systems, it would be vulnerable to business discontinuity. As a result, the issue of how to strengthen IT capabilities so that a company can prevent or quickly recover from disasters becomes a serious concern. In this paper, a discrete optimization model is proposed to allocate redundancy to IT assets for disaster recovery planning. The objective is to maximize the overall survivability of an organization's critical IT functions by selecting their appropriate redundancy levels while still satisfying a budgetary resource constraint. A solution procedure based on probabilistic dynamic programming is proposed to solve the problem, and an example is used to illustrate its usage and effectiveness.
机译:在当前的网络经济中,企业越来越依赖信息技术(IT)来执行其操作并与业务伙伴交换信息。但是,对IT的严重依赖对组织构成了潜在威胁。当灾难袭来并导致其计算和通信系统出现故障时,它很容易受到业务中断的影响。结果,如何增强IT能力以使公司能够预防灾难或从灾难中快速恢复的问题就成为一个严重的问题。在本文中,提出了一种离散的优化模型,用于为IT资产分配冗余以进行灾难恢复计划。目的是通过选择适当的冗余级别,同时仍然满足预算资源的限制,最大化组织关键IT功能的总体生存能力。提出了一种基于概率动态规划的求解方法来解决该问题,并以一个实例来说明其用法和有效性。

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