Multiple Shooting and Time Domain Decomposition Methods
Title | Multiple Shooting and Time Domain Decomposition Methods PDF eBook |
Author | Thomas Carraro |
Publisher | Springer |
Pages | 424 |
Release | 2015-10-26 |
Genre | Mathematics |
ISBN | 3319233211 |
This book offers a comprehensive collection of the most advanced numerical techniques for the efficient and effective solution of simulation and optimization problems governed by systems of time-dependent differential equations. The contributions present various approaches to time domain decomposition, focusing on multiple shooting and parareal algorithms. The range of topics covers theoretical analysis of the methods, as well as their algorithmic formulation and guidelines for practical implementation. Selected examples show that the discussed approaches are mandatory for the solution of challenging practical problems. The practicability and efficiency of the presented methods is illustrated by several case studies from fluid dynamics, data compression, image processing and computational biology, giving rise to possible new research topics. This volume, resulting from the workshop Multiple Shooting and Time Domain Decomposition Methods, held in Heidelberg in May 2013, will be of great interest to applied mathematicians, computer scientists and all scientists using mathematical methods.
Domain Decomposition Methods in Science and Engineering XXI
Title | Domain Decomposition Methods in Science and Engineering XXI PDF eBook |
Author | Jocelyne Erhel |
Publisher | Springer |
Pages | 931 |
Release | 2014-10-10 |
Genre | Mathematics |
ISBN | 3319057898 |
This volume contains a selection of papers presented at the 21st international conference on domain decomposition methods in science and engineering held in Rennes, France, June 25-29, 2012. Domain decomposition is an active and interdisciplinary research discipline, focusing on the development, analysis and implementation of numerical methods for massively parallel computers. Domain decomposition methods are among the most efficient solvers for large scale applications in science and engineering. They are based on a solid theoretical foundation and shown to be scalable for many important applications. Domain decomposition techniques can also naturally take into account multiscale phenomena. This book contains the most recent results in this important field of research, both mathematically and algorithmically and allows the reader to get an overview of this exciting branch of numerical analysis and scientific computing.
Parallel Dynamic and Transient Simulation of Large-Scale Power Systems
Title | Parallel Dynamic and Transient Simulation of Large-Scale Power Systems PDF eBook |
Author | Venkata Dinavahi |
Publisher | Springer Nature |
Pages | 492 |
Release | 2022-01-01 |
Genre | Technology & Engineering |
ISBN | 303086782X |
This textbook introduces methods of accelerating transient stability (dynamic) simulation and electromagnetic transient simulation on massively parallel processors for large-scale AC-DC grids – two of the most common and computationally onerous studies done by energy control centers and research laboratories for the planning, design, and operation of such integrated grids for ensuring the security and reliability of electric power. Simulation case studies provided in the book range from small didactic test circuits to realistic-sized AC-DC grids, and special emphasis is placed on detailed device-level multi-physics models for power system equipment and decomposition techniques for simulating large-scale systems. Parallel Dynamic and Transient Simulation of Large-Scale Power Systems: A High Performance Computing Solution is a comprehensive state-of-the-art guide for upper-level undergraduate and graduate students in power systems engineering. Practicing engineers, software developers, and scientists working in the power and energy industry will find it to be a timely and valuable reference for solving potential problems in their design and development activities. Detailed device-level electro-thermal modeling for power electronic systems in DC grids; Provides comprehensive dynamic and transient simulation of integrated large-scale AC-DC grids; Offers detailed models of renewable energy system models.
Reduced-Order Modeling (ROM) for Simulation and Optimization
Title | Reduced-Order Modeling (ROM) for Simulation and Optimization PDF eBook |
Author | Winfried Keiper |
Publisher | Springer |
Pages | 184 |
Release | 2018-04-11 |
Genre | Mathematics |
ISBN | 3319753193 |
This edited monograph collects research contributions and addresses the advancement of efficient numerical procedures in the area of model order reduction (MOR) for simulation, optimization and control. The topical scope includes, but is not limited to, new out-of-the-box algorithmic solutions for scientific computing, e.g. reduced basis methods for industrial problems and MOR approaches for electrochemical processes. The target audience comprises research experts and practitioners in the field of simulation, optimization and control, but the book may also be beneficial for graduate students alike.
Parallel-in-Time Integration Methods
Title | Parallel-in-Time Integration Methods PDF eBook |
Author | Benjamin Ong |
Publisher | Springer Nature |
Pages | 134 |
Release | 2021-08-24 |
Genre | Mathematics |
ISBN | 3030759334 |
This volume includes contributions from the 9th Parallel-in-Time (PinT) workshop, an annual gathering devoted to the field of time-parallel methods, aiming to adapt existing computer models to next-generation machines by adding a new dimension of scalability. As the latest supercomputers advance in microprocessing ability, they require new mathematical algorithms in order to fully realize their potential for complex systems. The use of parallel-in-time methods will provide dramatically faster simulations in many important areas, including biomedical (e.g., heart modeling), computational fluid dynamics (e.g., aerodynamics and weather prediction), and machine learning applications. Computational and applied mathematics is crucial to this progress, as it requires advanced methodologies from the theory of partial differential equations in a functional analytic setting, numerical discretization and integration, convergence analyses of iterative methods, and the development and implementation of new parallel algorithms. Therefore, the workshop seeks to bring together an interdisciplinary group of experts across these fields to disseminate cutting-edge research and facilitate discussions on parallel time integration methods.
Space-Time Methods
Title | Space-Time Methods PDF eBook |
Author | Ulrich Langer |
Publisher | Walter de Gruyter GmbH & Co KG |
Pages | 262 |
Release | 2019-09-23 |
Genre | Mathematics |
ISBN | 3110548488 |
This volume provides an introduction to modern space-time discretization methods such as finite and boundary elements and isogeometric analysis for time-dependent initial-boundary value problems of parabolic and hyperbolic type. Particular focus is given on stable formulations, error estimates, adaptivity in space and time, efficient solution algorithms, parallelization of the solution pipeline, and applications in science and engineering.
Domain Decomposition Methods for the Numerical Solution of Partial Differential Equations
Title | Domain Decomposition Methods for the Numerical Solution of Partial Differential Equations PDF eBook |
Author | Tarek Mathew |
Publisher | Springer Science & Business Media |
Pages | 775 |
Release | 2008-06-25 |
Genre | Mathematics |
ISBN | 354077209X |
Domain decomposition methods are divide and conquer computational methods for the parallel solution of partial differential equations of elliptic or parabolic type. The methodology includes iterative algorithms, and techniques for non-matching grid discretizations and heterogeneous approximations. This book serves as a matrix oriented introduction to domain decomposition methodology. A wide range of topics are discussed include hybrid formulations, Schwarz, and many more.