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Survivability as a generalization of recovery

机译:生存能力作为恢复的概括

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Social infrastructure systems such as communication, transportation, power and water supply systems are now facing various types of threats including component failures, security attacks and natural disasters, etc. Whenever such undesirable events occur, it is crucial to recover the system as quickly as possible because the downtime of social infrastructure causes catastrophic consequences in the society. In the business continuity context, Recovery Time Objective (RTO) has been used as a criterion to specify the allowable maximum time to recover from system failure events. While RTO gives the requirement for system recovery time, performance degradation of infrastructure service during the recovery period is another dimension that should be taken into consideration. In this paper, we introduce survivability as a generalization of recovery behavior which can address the performance impacts during the recovery and show a survivability quantification example in a escalating and deferred repair system.
机译:社会基础设施系统,例如通信,运输,电力和供水系统,现在面临各种类型的威胁,包括组件故障,安全攻击和自然灾害等。每当发生此类不良事件时,尽快恢复系统至关重要因为社会基础设施的停机会给社会带来灾难性的后果。在业务连续性上下文中,恢复时间目标(RTO)已用作指定从系统故障事件中恢复的允许最大时间的标准。尽管RTO给出了系统恢复时间的要求,但是恢复期间基础结构服务的性能下降是应该考虑的另一个方面。在本文中,我们将生存能力作为恢复行为的概括,可以解决恢复过程中的性能影响,并在逐步升级和递延的修复系统中显示生存能力的量化示例。

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