Simulation-Driven Design by Knowledge-Based Response Correction Techniques

Nonfiction, Science & Nature, Mathematics, Applied, Computers, Advanced Computing, Computer Science
Cover of the book Simulation-Driven Design by Knowledge-Based Response Correction Techniques by Slawomir Koziel, Leifur Leifsson, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Slawomir Koziel, Leifur Leifsson ISBN: 9783319301150
Publisher: Springer International Publishing Publication: May 13, 2016
Imprint: Springer Language: English
Author: Slawomir Koziel, Leifur Leifsson
ISBN: 9783319301150
Publisher: Springer International Publishing
Publication: May 13, 2016
Imprint: Springer
Language: English

Focused on efficient simulation-driven multi-fidelity optimization techniques, this monograph on simulation-driven optimization covers simulations utilizing physics-based low-fidelity models, often based on coarse-discretization simulations or other types of simplified physics representations, such as analytical models. The methods presented in the book exploit as much as possible any knowledge about the system or device of interest embedded in the low-fidelity model with the purpose of reducing the computational overhead of the design process. Most of the techniques described in the book are of response correction type and can be split into parametric (usually based on analytical formulas) and non-parametric, i.e., not based on analytical formulas. The latter, while more complex in implementation, tend to be more efficient.

The book presents a general formulation of response correction techniques as well as a number of specific methods, including those based on correcting the low-fidelity model response (output space mapping, manifold mapping, adaptive response correction and shape-preserving response prediction), as well as on suitable modification of design specifications. Detailed formulations, application examples and the discussion of advantages and disadvantages of these techniques are also included. The book demonstrates the use of the discussed techniques for solving real-world engineering design problems, including applications in microwave engineering, antenna design, and aero/hydrodynamics.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Focused on efficient simulation-driven multi-fidelity optimization techniques, this monograph on simulation-driven optimization covers simulations utilizing physics-based low-fidelity models, often based on coarse-discretization simulations or other types of simplified physics representations, such as analytical models. The methods presented in the book exploit as much as possible any knowledge about the system or device of interest embedded in the low-fidelity model with the purpose of reducing the computational overhead of the design process. Most of the techniques described in the book are of response correction type and can be split into parametric (usually based on analytical formulas) and non-parametric, i.e., not based on analytical formulas. The latter, while more complex in implementation, tend to be more efficient.

The book presents a general formulation of response correction techniques as well as a number of specific methods, including those based on correcting the low-fidelity model response (output space mapping, manifold mapping, adaptive response correction and shape-preserving response prediction), as well as on suitable modification of design specifications. Detailed formulations, application examples and the discussion of advantages and disadvantages of these techniques are also included. The book demonstrates the use of the discussed techniques for solving real-world engineering design problems, including applications in microwave engineering, antenna design, and aero/hydrodynamics.

More books from Springer International Publishing

Cover of the book Relativity and Gravitation by Slawomir Koziel, Leifur Leifsson
Cover of the book Linguistic and Cultural Innovation in Schools by Slawomir Koziel, Leifur Leifsson
Cover of the book Controllability, Identification, and Randomness in Distributed Systems by Slawomir Koziel, Leifur Leifsson
Cover of the book Infiltration Measurements for Soil Hydraulic Characterization by Slawomir Koziel, Leifur Leifsson
Cover of the book The Equationally-Defined Commutator by Slawomir Koziel, Leifur Leifsson
Cover of the book Behavioral Consultation and Primary Care by Slawomir Koziel, Leifur Leifsson
Cover of the book Computational Modeling of Objects Presented in Images. Fundamentals, Methods, and Applications by Slawomir Koziel, Leifur Leifsson
Cover of the book Nursing Care of the Pediatric Neurosurgery Patient by Slawomir Koziel, Leifur Leifsson
Cover of the book Star Ark by Slawomir Koziel, Leifur Leifsson
Cover of the book Legacies of Occupation by Slawomir Koziel, Leifur Leifsson
Cover of the book Advances in Intelligent Systems and Computing II by Slawomir Koziel, Leifur Leifsson
Cover of the book Law, Engineering, and the American Right-of-Way by Slawomir Koziel, Leifur Leifsson
Cover of the book Measurement and Analysis in Transforming Healthcare Delivery by Slawomir Koziel, Leifur Leifsson
Cover of the book Research Trends in Mathematics Teacher Education by Slawomir Koziel, Leifur Leifsson
Cover of the book Portfolio Selection Using Multi-Objective Optimisation by Slawomir Koziel, Leifur Leifsson
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