Since the publication of the first edition of the present volume in 1980, the stochastic stability of differential equations has become a very popular subject of research in mathematics and engineering. To date exact formulas for the Lyapunov exponent, the criteria for the moment and almost sure stability, and for the existence of stationary and periodic solutions of stochastic differential equations have been widely used in the literature. In this updated volume readers will find important new results on the moment Lyapunov exponent, stability index and some other fields, obtained after publication of the first edition, and a significantly expanded bibliography.
This volume provides a solid foundation for students in graduate courses in mathematics and its applications. It is also useful for those researchers who would like to learn more about this subject, to start their research in this area or to study the properties of concrete mechanical systems subjected to random perturbations.
| ISBN: | 9783642270284 |
| Publication date: | 27th November 2013 |
| Author: | Rafail Khasminskii |
| Publisher: | Springer an imprint of Springer Berlin Heidelberg |
| Format: | Paperback |
| Pagination: | 342 pages |
| Series: | Stochastic Modelling and Applied Probability |
| Genres: |
Probability and statistics Stochastics Classical mechanics |
Since the publication of the first edition of the present volume in 1980, the stochastic stability of differential equations has become a very popular subject of research in mathematics and engineering. To date exact formulas for the Lyapunov exponent, the criteria for the moment and almost sure stability, and for the existence of stationary and periodic solutions of stochastic differential equations have been widely used in the literature.
Stochastic Stability of Differential Equations features in the following genres: Probability and statistics, Stochastics, Classical mechanics
Paperback. Not Available.
Stochastic Stability of Differential Equations was written by Rafail Khasminskii and published by Springer an imprint of Springer Berlin Heidelberg
Stochastic Stability of Differential Equations has 342 pages
Yes it is part of Stochastic Modelling and Applied Probability series