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Modeling Finite‐Time Failure Probabilities in Risk Analysis Applications

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  • Dimitrina S. Dimitrova
  • Vladimir K. Kaishev
  • Shouqi Zhao

Abstract

In this article, we introduce a framework for analyzing the risk of systems failure based on estimating the failure probability. The latter is defined as the probability that a certain risk process, characterizing the operations of a system, reaches a possibly time‐dependent critical risk level within a finite‐time interval. Under general assumptions, we define two dually connected models for the risk process and derive explicit expressions for the failure probability and also the joint probability of the time of the occurrence of failure and the excess of the risk process over the risk level. We illustrate how these probabilistic models and results can be successfully applied in several important areas of risk analysis, among which are systems reliability, inventory management, flood control via dam management, infectious disease spread, and financial insolvency. Numerical illustrations are also presented.

Suggested Citation

  • Dimitrina S. Dimitrova & Vladimir K. Kaishev & Shouqi Zhao, 2015. "Modeling Finite‐Time Failure Probabilities in Risk Analysis Applications," Risk Analysis, John Wiley & Sons, vol. 35(10), pages 1919-1939, October.
  • Handle: RePEc:wly:riskan:v:35:y:2015:i:10:p:1919-1939
    DOI: 10.1111/risa.12384
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    References listed on IDEAS

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    1. Armando Serrano‐Lombillo & Ignacio Escuder‐Bueno & Manuel G. de Membrillera‐Ortuño & Luis Altarejos‐García, 2011. "Methodology for the Calculation of Annualized Incremental Risks in Systems of Dams," Risk Analysis, John Wiley & Sons, vol. 31(6), pages 1000-1015, June.
    2. Bas Kolen & Matthijs Kok & Ira Helsloot & Bob Maaskant, 2013. "EvacuAid: A Probabilistic Model to Determine the Expected Loss of Life for Different Mass Evacuation Strategies During Flood Threats," Risk Analysis, John Wiley & Sons, vol. 33(7), pages 1312-1333, July.
    3. Joanna Resurreccion & Joost R. Santos, 2012. "Multiobjective Prioritization Methodology and Decision Support System for Evaluating Inventory Enhancement Strategies for Disrupted Interdependent Sectors," Risk Analysis, John Wiley & Sons, vol. 32(10), pages 1673-1692, October.
    4. Das, Shubhabrata & Kratz, Marie, 2010. "On Devising Various Alarm Systems for Insurance Companies," ESSEC Working Papers DR 10008, ESSEC Research Center, ESSEC Business School.
    5. R. Gerrard & A. Tsanakas, 2011. "Failure Probability Under Parameter Uncertainty," Risk Analysis, John Wiley & Sons, vol. 31(5), pages 727-744, May.
    6. M. Elisabeth Paté‐Cornell & Robert G. Bea, 1992. "Management Errors and System Reliability: A Probabilistic Approach and Application to Offshore Platforms," Risk Analysis, John Wiley & Sons, vol. 12(1), pages 1-18, March.
    7. Louis Anthony Cox, 2009. "Risk Analysis of Complex and Uncertain Systems," International Series in Operations Research and Management Science, Springer, number 978-0-387-89014-2, September.
    8. Francisco J. Zagmutt & Stephen H. Sempier & Terril R. Hanson, 2013. "Disease Spread Models to Estimate Highly Uncertain Emerging Diseases Losses for Animal Agriculture Insurance Policies: An Application to the U.S. Farm‐Raised Catfish Industry," Risk Analysis, John Wiley & Sons, vol. 33(10), pages 1924-1937, October.
    9. Dimitrova, Dimitrina S. & Kaishev, Vladimir K. & Zhao, Shouqi, 2015. "On finite-time ruin probabilities in a generalized dual risk model with dependence," European Journal of Operational Research, Elsevier, vol. 242(1), pages 134-148.
    10. Marie Kratz & Shubhabrata Das, 2010. "On Devising Various Alarm Systems for Insurance Companies," Post-Print hal-00572546, HAL.
    11. Das, S. & Kratz, M., 2012. "Alarm system for insurance companies: A strategy for capital allocation," Insurance: Mathematics and Economics, Elsevier, vol. 51(1), pages 53-65.
    12. M. T. Todinov, 2006. "Reliability Analysis Based on the Losses from Failures," Risk Analysis, John Wiley & Sons, vol. 26(2), pages 311-335, April.
    13. Lester B. Lave & Tunde Balvanyos, 1998. "Risk Analysis and Management of Dam Safety," Risk Analysis, John Wiley & Sons, vol. 18(4), pages 455-462, August.
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    Cited by:

    1. Mei Choi Chiu & Chi Seng Pun & Hoi Ying Wong, 2017. "Big Data Challenges of High‐Dimensional Continuous‐Time Mean‐Variance Portfolio Selection and a Remedy," Risk Analysis, John Wiley & Sons, vol. 37(8), pages 1532-1549, August.
    2. Dimitrova, Dimitrina S. & Ignatov, Zvetan G. & Kaishev, Vladimir K. & Tan, Senren, 2020. "On double-boundary non-crossing probability for a class of compound processes with applications," European Journal of Operational Research, Elsevier, vol. 282(2), pages 602-613.

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