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20132022
most citedResilience and efficiency in transportation networks

463 citations · 553 across the 10 of their papers we have counts for

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Showing physics.soc-phShow all

6 papers · 1 filter

physics.soc-ph2020

Value-based optimization of healthcare resource allocation for COVID-19 hot spots

Zachary A. Collier, Jeffrey M. Keisler, Benjamin D. Trump +3

With the emerging COVID-19 crisis, a critical task for public health officials and policy makers is to decide how to prioritize, locate, and allocate scarce resources. To answer th…

physics.soc-ph20202 cited

The Vaccine Supply Chain: A Call for Resilience Analytics to Support COVID-19 Vaccine Production and Distribution

Maureen S. Golan, Benjamin D. Trump, Jeffrey C. Cegan +1

The COVID19 pandemic has highlighted the lack of resilience in supply chains, as global networks fail from disruptions at single nodes and connections. Through an overview of the e…

physics.soc-ph2019

Lack of Resilience in Transportation Networks: Economic Implications

Margaret Kurth, William Kozlowski, Alexander Ganin +4

Disruptions to transportation networks are inevitable. Currently, most mandated development-related transportation planning is intended to prepare for frequently occurring and obse…

physics.soc-ph2019

The Need to Reconcile Concepts that Characterize Systems Withstanding Threats

Stephanie Galaitsi, Benjamin D. Trump, Jeffrey M. Keisler +1

Desirable system performance in the face of threats and disruptions has been characterized by various management concepts. Through semi-structured interviews with editors of journa…

physics.soc-ph2017463 cited

Resilience and efficiency in transportation networks

Alexander A. Ganin, Maksim Kitsak, Dayton Marchese +3

Urban transportation systems are vulnerable to congestion, accidents, weather, special events, and other costly delays. Whereas typical policy responses prioritize reduction of del…

physics.soc-ph201768 cited

Stability of a Giant Connected Component in a Complex Network

Maksim Kitsak, Alexander A. Ganin, Daniel A. Eisenberg +4

We analyze the stability of the network's giant connected component under impact of adverse events, which we model through the link percolation. Specifically, we quantify the exten…