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Anne S. Kiremidjian

Anne S. Kiremidjian

D-Index & Metrics

Engineering and Technology

D-Index
45
Citations
8945
World Ranking
5415
National Ranking
1517

Overview

Anne S. Kiremidjian is affiliated with Stanford University in the United States, specializing in engineering with a focus on civil and structural engineering, sociology and political science, geophysics, emergency medical services, and statistics, probability, and uncertainty. Their research spans multiple aspects of disaster management, resilience, and infrastructure vulnerability.

Their published work covers a range of topics related to infrastructure resilience and vulnerability analysis, disaster management and resilience, disaster response and management, flood risk assessment and management, earthquake and tectonic studies, earthquake detection and analysis, and evacuation and crowd dynamics.

Key frequent co-authors in their research include Luis Ceferino, Irene Alisjahbana, Gregory G. Deierlein, Yizheng Liao, and Chin Hsiung Loh.

Anne S. Kiremidjian has contributed to several prominent publication venues, including Earthquake Spectra, Bulletin of the Seismological Society of America, International Journal of Sustainable Materials and Structural Systems, Nature Communications, and Reliability Engineering & System Safety.

Recent papers authored or co-authored by Anne S. Kiremidjian are:

  • Effective plans for hospital system response to earthquake emergencies, 2020, Nature Communications
  • An agent-based financing model for post-earthquake housing recovery: Quantifying recovery inequalities across income groups, 2022, Earthquake Spectra
  • Probabilistic Space- and Time-Interaction Modeling of Mainshock Earthquake Rupture Occurrence, 2020, Bulletin of the Seismological Society of America
  • Modeling housing recovery after the 2018 Lombok earthquakes using a stochastic queuing model, 2020, Earthquake Spectra
  • The disaster resilience value of shared rooftop solar systems in residential communities, 2021, Earthquake Spectra

Best Publications

  • Time series-based damage detection and localization algorithm with application to the ASCE benchmark structure

    K. Krishnan Nair;Anne S. Kiremidjian;Kincho H. Law

  • Method for Probabilistic Evaluation of Seismic Structural Damage

    Ajay Singhal;Anne S. Kiremidjian

  • An experimental study of temperature effect on modal parameters of the Alamosa Canyon Bridge

    Hoon Sohn;Mark Dzwonczyk;Erik G. Straser;Anne S. Kiremidjian

  • A modular, wireless damage monitoring system for structures

    Erik G. Straser;Anne S. Kiremidjian;Teresa H. Meng

  • Assembly-Based Vulnerability of Buildings and Its Use in Performance Evaluation

    Keith A. Porter;Anne S. Kiremidjian;Jeremiah S. LeGrue

  • Two-tiered wireless sensor network architecture for structural health monitoring

    Venkata Anil Kottapalli;Anne S. Kiremidjian;Jerome Peter Lynch;Ed Carryer

  • Statistical procedures for developing earthquake damage fragility curves

    David Lallemant;Anne S Kiremidjian;Henry Burton

  • Embedding damage detection algorithms in a wireless sensing unit for operational power efficiency

    Jerome Peter Lynch;Arvind Sundararajan;Kincho H Law;Anne S Kiremidjian

  • Benefit-Cost Analysis of FEMA Hazard Mitigation Grants

    Adam Rose;Keith Porter;Nicole Dash;Jawhar Bouabid

  • Statistical Analysis of Bridge Damage Data from the 1994 Northridge, CA, Earthquake

    Nesrin I. Basöz;Anne S. Kiremidjian;Stephanie A. King;Kincho H. Law

  • Design of Piezoresistive MEMS-Based Accelerometer for Integration with Wireless Sensing Unit for Structural Monitoring

    Jerome P. Lynch;Aaron Partridge;Kincho H. Law;Thomas W. Kenny

  • Bayesian Updating of Fragilities with Application to RC Frames

    Ajay Singhal;Anne S. Kiremidjian

  • Shadow detection and radiometric restoration in satellite high resolution images

    P. Sarabandi;F. Yamazaki;M. Matsuoka;A. Kiremidjian

  • Time Series Based Structural Damage Detection Algorithm Using Gaussian Mixtures Modeling

    K. Krishnan Nair;Anne S. Kiremidjian

  • A review of earthquake occurrence models for seismic hazard analysis

    Thalia Anagnos;Anne S. Kiremidjian

  • Embedment of structural monitoring algorithms in a wireless sensing unit

    Jerome Peter Lynch;Arvind Sundararajan;Kincho H. Law;Anne S. Kiremidjian

  • Design and performance validation of a wireless sensing unit for structural monitoring applications

    Jerome Peter Lynch;Kincho H. Law;Anne S. Kiremidjian;Ed Carryer

  • The Design of a Wireless Sensing Unit for Structural Health Monitoring

    J. P. Lynch;K. H. Law;A. S. Kiremidjian;T. W. Kenny

  • Stochastic time-predictable model for earthquake occurrences

    Thalia Anagnos;A. S. Kiremidjian

  • Uncertainty and Correlation for Loss Assessment of Spatially Distributed Systems

    Renee Lee;Anne S. Kiremidjian

Frequent Co-Authors

Kincho H. Law
Kincho H. Law Stanford University
Jerome P. Lynch
Jerome P. Lynch University of Michigan–Ann Arbor
Ram Rajagopal
Ram Rajagopal Stanford University
Thomas W. Kenny
Thomas W. Kenny Stanford University
Hoon Sohn
Hoon Sohn Korea Advanced Institute of Science and Technology
Teresa H. Meng
Teresa H. Meng Stanford University
Chin-Hsiung Loh
Chin-Hsiung Loh National Taiwan University
Gregory G. Deierlein
Gregory G. Deierlein Stanford University
Charles R. Farrar
Charles R. Farrar Los Alamos National Laboratory
David J. Wald
David J. Wald United States Geological Survey

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