Title :
Measurement of locality specific resilience
Author :
Schneider, Jennifer ; Romanowski, Carol ; Raj, Rajendra K. ; Mishra, Sumita ; Stein, Kent
Author_Institution :
Rochester Inst. of Technol., Rochester, NY, USA
Abstract :
Resilience has been defined at the local, state, and national levels, and subsequent attempts to refine the definition have added clarity. Quantitative measurements, however, are crucial to a shared understanding of resilience. This paper reviews the evolution of resiliency indicators and metrics and suggests extensions to current indicators to measure functional resilience at a jurisdictional or community level. Using a management systems approach, an input/output model may be developed to demonstrate abilities, actions, and activities needed to support a desired outcome. Applying systematic gap analysis and an improvement cycle with defined metrics, the paper proposes a model to evaluate a community´s operational capability to respond to stressors. As each locality is different-with unique risks, strengths, and weaknesses-the model incorporates these characteristics and calculates a relative measure of maturity for that community. Any community can use the resulting model output to plan and improve its resiliency capabilities.
Keywords :
emergency management; social sciences; community operational capability; functional resilience measurement; locality specific resilience measurement; quantitative measurement; resiliency capability; resiliency indicators; resiliency metrics; systematic gap analysis; Economics; Emergency services; Hazards; Measurement; Resilience; Standards; Training; AHP; community resilience; operational resilience modeling; resilience capability metrics;
Conference_Titel :
Technologies for Homeland Security (HST), 2015 IEEE International Symposium on
Conference_Location :
Waltham, MA
Print_ISBN :
978-1-4799-1736-5
DOI :
10.1109/THS.2015.7225332