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Data assimilationa mathematical intr...
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Law, Kody.
Data assimilationa mathematical introduction /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Data assimilationby Kody Law, Andrew Stuart, Konstantinos Zygalakis.
Reminder of title:
a mathematical introduction /
Author:
Law, Kody.
other author:
Stuart, Andrew.
Published:
Cham :Springer International Publishing :2015.
Description:
xviii, 242 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Mathematical models.
Online resource:
http://dx.doi.org/10.1007/978-3-319-20325-6
ISBN:
9783319203256$q(electronic bk.)
Data assimilationa mathematical introduction /
Law, Kody.
Data assimilation
a mathematical introduction /[electronic resource] :by Kody Law, Andrew Stuart, Konstantinos Zygalakis. - Cham :Springer International Publishing :2015. - xviii, 242 p. :ill. (some col.), digital ;24 cm. - Texts in applied mathematics,v.620939-2475 ;. - Texts in applied mathematics ;40..
Mathematical background -- Discrete Time: Formulation -- Discrete Time: Smoothing Algorithms -- Discrete Time: Filtering Algorithms -- Discrete Time: MATLAB Programs -- Continuous Time: Formulation -- Continuous Time: Smoothing Algorithms -- Continuous Time: Filtering Algorithms -- Continuous Time: MATLAB Programs -- Index.
This book provides a systematic treatment of the mathematical underpinnings of work in data assimilation, covering both theoretical and computational approaches. Specifically the authors develop a unified mathematical framework in which a Bayesian formulation of the problem provides the bedrock for the derivation, development and analysis of algorithms; the many examples used in the text, together with the algorithms which are introduced and discussed, are all illustrated by the MATLAB software detailed in the book and made freely available online. The book is organized into nine chapters: the first contains a brief introduction to the mathematical tools around which the material is organized; the next four are concerned with discrete time dynamical systems and discrete time data; the last four are concerned with continuous time dynamical systems and continuous time data and are organized analogously to the corresponding discrete time chapters. This book is aimed at mathematical researchers interested in a systematic development of this interdisciplinary field, and at researchers from the geosciences, and a variety of other scientific fields, who use tools from data assimilation to combine data with time-dependent models. The numerous examples and illustrations make understanding of the theoretical underpinnings of data assimilation accessible. Furthermore, the examples, exercises and MATLAB software, make the book suitable for students in applied mathema tics, either through a lecture course, or through self-study.
ISBN: 9783319203256$q(electronic bk.)
Standard No.: 10.1007/978-3-319-20325-6doiSubjects--Topical Terms:
182479
Mathematical models.
LC Class. No.: QA401
Dewey Class. No.: 511.8
Data assimilationa mathematical introduction /
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This book provides a systematic treatment of the mathematical underpinnings of work in data assimilation, covering both theoretical and computational approaches. Specifically the authors develop a unified mathematical framework in which a Bayesian formulation of the problem provides the bedrock for the derivation, development and analysis of algorithms; the many examples used in the text, together with the algorithms which are introduced and discussed, are all illustrated by the MATLAB software detailed in the book and made freely available online. The book is organized into nine chapters: the first contains a brief introduction to the mathematical tools around which the material is organized; the next four are concerned with discrete time dynamical systems and discrete time data; the last four are concerned with continuous time dynamical systems and continuous time data and are organized analogously to the corresponding discrete time chapters. This book is aimed at mathematical researchers interested in a systematic development of this interdisciplinary field, and at researchers from the geosciences, and a variety of other scientific fields, who use tools from data assimilation to combine data with time-dependent models. The numerous examples and illustrations make understanding of the theoretical underpinnings of data assimilation accessible. Furthermore, the examples, exercises and MATLAB software, make the book suitable for students in applied mathema tics, either through a lecture course, or through self-study.
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