<p>The favourable reception of the first edition and the encouragement received from many readers have prompted the author to bring out this new edition. This provides the opportunity for correcting a number of errors, typographical and others, contained in the first edition and making further impro
Numerical Data Fitting in Dynamical Systems: A Practical Introduction with Applications and Software
โ Scribed by Klaus Schittkowski (auth.)
- Publisher
- Springer US
- Year
- 2002
- Tongue
- English
- Leaves
- 405
- Series
- Applied Optimization 77
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Real life phenomena in engineering, natural, or medical sciences are often described by a mathematical model with the goal to analyze numerically the behaviour of the system. Advantages of mathematical models are their cheap availability, the possibility of studying extreme situations that cannot be handled by experiments, or of simulating real systems during the design phase before constructing a first prototype. Moreover, they serve to verify decisions, to avoid expensive and time consuming experimental tests, to analyze, understand, and explain the behaviour of systems, or to optimize design and production. As soon as a mathematical model contains differential dependencies from an additional parameter, typically the time, we call it a dynamical model. There are two key questions always arising in a practical environment: 1 Is the mathematical model correct? 2 How can I quantify model parameters that cannot be measured directly? In principle, both questions are easily answered as soon as some experimental data are available. The idea is to compare measured data with predicted model function values and to minimize the differences over the whole parameter space. We have to reject a model if we are unable to find a reasonably accurate fit. To summarize, parameter estimation or data fitting, respectively, is extremely important in all practical situations, where a mathematical model and corresponding experimental data are available to describe the behaviour of a dynamical system.
โฆ Table of Contents
Front Matter....Pages i-xii
Introduction....Pages 1-6
Mathematical Foundations....Pages 7-118
Data Fitting Models....Pages 119-180
Numerical Experiments....Pages 181-229
Case Studies....Pages 231-284
Back Matter....Pages 285-396
โฆ Subjects
Numeric Computing; Optimization; Mathematical Modeling and Industrial Mathematics; Applications of Mathematics; Statistics for Life Sciences, Medicine, Health Sciences
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In this translation of the German edition, the authors provide insight into the numerical simulation of fluid flow. Using a simple numerical method as an expository example, the individual steps of scientific computing are presented: the derivation of the mathematical model; the discretization of th