Fractional Brownian Motion

Approximations and Projections

Nonfiction, Science & Nature, Mathematics, Statistics
Cover of the book Fractional Brownian Motion by Oksana Banna, Yuliya Mishura, Kostiantyn Ralchenko, Sergiy Shklyar, Wiley
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Author: Oksana Banna, Yuliya Mishura, Kostiantyn Ralchenko, Sergiy Shklyar ISBN: 9781119610335
Publisher: Wiley Publication: April 10, 2019
Imprint: Wiley-ISTE Language: English
Author: Oksana Banna, Yuliya Mishura, Kostiantyn Ralchenko, Sergiy Shklyar
ISBN: 9781119610335
Publisher: Wiley
Publication: April 10, 2019
Imprint: Wiley-ISTE
Language: English

This monograph studies the relationships between fractional Brownian motion (fBm) and other processes of more simple form. In particular, this book solves the problem of the projection of fBm onto the space of Gaussian martingales that can be represented as Wiener integrals with respect to a Wiener process. It is proved that there exists a unique martingale closest to fBm in the uniform integral norm. Numerical results concerning the approximation problem are given. The upper bounds of distances from fBm to the different subspaces of Gaussian martingales are evaluated and the numerical calculations are involved. The approximations of fBm by a uniformly convergent series of Lebesgue integrals, semimartingales and absolutely continuous processes are presented.

As auxiliary but interesting results, the bounds from below and from above for the coefficient appearing in the representation of fBm via the Wiener process are established and some new inequalities for Gamma functions, and even for trigonometric functions, are obtained.

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This monograph studies the relationships between fractional Brownian motion (fBm) and other processes of more simple form. In particular, this book solves the problem of the projection of fBm onto the space of Gaussian martingales that can be represented as Wiener integrals with respect to a Wiener process. It is proved that there exists a unique martingale closest to fBm in the uniform integral norm. Numerical results concerning the approximation problem are given. The upper bounds of distances from fBm to the different subspaces of Gaussian martingales are evaluated and the numerical calculations are involved. The approximations of fBm by a uniformly convergent series of Lebesgue integrals, semimartingales and absolutely continuous processes are presented.

As auxiliary but interesting results, the bounds from below and from above for the coefficient appearing in the representation of fBm via the Wiener process are established and some new inequalities for Gamma functions, and even for trigonometric functions, are obtained.

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