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Quantitatively Representing Nonlinear Disaster Recovery

机译:定量表示非线性灾难恢复

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This article provides a new technique for quantitatively characterizing the progress of recovery operations in the aftermath of a disaster event. The approach extends previous research on measuring dynamic, or adaptive, disaster resilience by developing a robust approach for characterizing nonlinear disaster recovery. In doing so, it enables a more accurate mathematical representation of different categories of recovery behavior and provides support for a much broader application of existing theory. Because the new approach inherits the ability to compare the relative behavior of multiple scenarios simultaneously, it also can serve as the basis for analytically comparing the expected performance of different plans for recovery operations. Practical application of the technique is demonstrated and discussed in the context of recovering electrical power after Hurricane Sandy struck the New York metropolitan area.
机译:本文提供了一种新技术,用于定量描述灾难事件后恢复操作的进度。该方法通过开发用于描述非线性灾难恢复特征的可靠方法,扩展了先前对测量动态或自适应灾难弹性的研究。这样,它可以更准确地数学表示不同类别的恢复行为,并为现有理论的更广泛应用提供支持。由于新方法继承了同时比较多个方案的相对行为的功能,因此它还可以作为分析比较不同恢复计划计划的预期性能的基础。在飓风桑迪袭击纽约都会区后恢复电力的背景下,对该技术的实际应用进行了演示和讨论。

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