Estimation of Rare Event Probabilities in Complex Aerospace and Other Systems

A Practical Approach

Nonfiction, Science & Nature, Science, Physics, Mechanics, Technology, Aeronautics & Astronautics
Cover of the book Estimation of Rare Event Probabilities in Complex Aerospace and Other Systems by Jerome Morio, Mathieu Balesdent, Elsevier Science
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Jerome Morio, Mathieu Balesdent ISBN: 9780081001110
Publisher: Elsevier Science Publication: November 16, 2015
Imprint: Woodhead Publishing Language: English
Author: Jerome Morio, Mathieu Balesdent
ISBN: 9780081001110
Publisher: Elsevier Science
Publication: November 16, 2015
Imprint: Woodhead Publishing
Language: English

Rare event probability (10-4 and less) estimation has become a large area of research in the reliability engineering and system safety domains. A significant number of methods have been proposed to reduce the computation burden for the estimation of rare events from advanced sampling approaches to extreme value theory. However, it is often difficult in practice to determine which algorithm is the most adapted to a given problem. Estimation of Rare Event Probabilities in Complex Aerospace and Other Systems: A Practical Approach provides a broad up-to-date view of the current available techniques to estimate rare event probabilities described with a unified notation, a mathematical pseudocode to ease their potential implementation and finally a large spectrum of simulation results on academic and realistic use cases.

  • Provides a broad overview of the practical approach of rare event methods.
  • Includes algorithms that are applied to aerospace benchmark test cases
  • Offers insight into practical tuning issues
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Rare event probability (10-4 and less) estimation has become a large area of research in the reliability engineering and system safety domains. A significant number of methods have been proposed to reduce the computation burden for the estimation of rare events from advanced sampling approaches to extreme value theory. However, it is often difficult in practice to determine which algorithm is the most adapted to a given problem. Estimation of Rare Event Probabilities in Complex Aerospace and Other Systems: A Practical Approach provides a broad up-to-date view of the current available techniques to estimate rare event probabilities described with a unified notation, a mathematical pseudocode to ease their potential implementation and finally a large spectrum of simulation results on academic and realistic use cases.

More books from Elsevier Science

Cover of the book Chilled Foods by Jerome Morio, Mathieu Balesdent
Cover of the book Metabolons and Supramolecular Enzyme Assemblies by Jerome Morio, Mathieu Balesdent
Cover of the book The Joy of Finite Mathematics by Jerome Morio, Mathieu Balesdent
Cover of the book Handbook of the Economics of Education by Jerome Morio, Mathieu Balesdent
Cover of the book Storm and Cloud Dynamics by Jerome Morio, Mathieu Balesdent
Cover of the book Nanoporous Materials III by Jerome Morio, Mathieu Balesdent
Cover of the book False Twist Textured Yarns by Jerome Morio, Mathieu Balesdent
Cover of the book Materials and the Environment by Jerome Morio, Mathieu Balesdent
Cover of the book Conservation of Fish and Shellfish Resources by Jerome Morio, Mathieu Balesdent
Cover of the book Methods in Chemical Process Safety by Jerome Morio, Mathieu Balesdent
Cover of the book Alteration of Ovoproducts by Jerome Morio, Mathieu Balesdent
Cover of the book Control Systems by Jerome Morio, Mathieu Balesdent
Cover of the book American Trypanosomiasis by Jerome Morio, Mathieu Balesdent
Cover of the book Mitochondrial Disorders in Neurology by Jerome Morio, Mathieu Balesdent
Cover of the book Paediatric Neurology by Jerome Morio, Mathieu Balesdent
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy