Numerical Approximation of the Magnetoquasistatic Model with Uncertainties

Numerical Approximation of the Magnetoquasistatic Model with Uncertainties
Title Numerical Approximation of the Magnetoquasistatic Model with Uncertainties PDF eBook
Author Ulrich Römer
Publisher Springer
Pages 128
Release 2016-07-27
Genre Technology & Engineering
ISBN 3319412949

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This book presents a comprehensive mathematical approach for solving stochastic magnetic field problems. It discusses variability in material properties and geometry, with an emphasis on the preservation of structural physical and mathematical properties. It especially addresses uncertainties in the computer simulation of magnetic fields originating from the manufacturing process. Uncertainties are quantified by approximating a stochastic reformulation of the governing partial differential equation, demonstrating how statistics of physical quantities of interest, such as Fourier harmonics in accelerator magnets, can be used to achieve robust designs. The book covers a number of key methods and results such as: a stochastic model of the geometry and material properties of magnetic devices based on measurement data; a detailed description of numerical algorithms based on sensitivities or on a higher-order collocation; an analysis of convergence and efficiency; and the application of the developed model and algorithms to uncertainty quantification in the complex magnet systems used in particle accelerators.

Numerical Approximation of the Magnetoquasistatic Model with Uncertainties and Its Application to Magnet Design

Numerical Approximation of the Magnetoquasistatic Model with Uncertainties and Its Application to Magnet Design
Title Numerical Approximation of the Magnetoquasistatic Model with Uncertainties and Its Application to Magnet Design PDF eBook
Author Ulrich Römer
Publisher
Pages 131
Release 2015
Genre
ISBN

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Mathematical Analysis and Simulation of Field Models in Accelerator Circuits

Mathematical Analysis and Simulation of Field Models in Accelerator Circuits
Title Mathematical Analysis and Simulation of Field Models in Accelerator Circuits PDF eBook
Author Idoia Cortes Garcia
Publisher Springer Nature
Pages 171
Release 2021-01-04
Genre Technology & Engineering
ISBN 3030632733

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This book deals with the analysis and development of numerical methods for the time-domain analysis of multiphysical effects in superconducting circuits of particle accelerator magnets. An important challenge is the simulation of “quenching”, i.e. the transition of a material from the superconducting to the normally electrically conductive state. The book analyses complex mathematical structures and presents models to simulate such quenching events in the context of generalized circuit elements. Furthermore, it proposes efficient parallelized algorithms with guaranteed convergence properties for the simulation of multiphysical problems. Spanning from theoretical concepts to applied research, and featuring rigorous mathematical presentations on one side, as well as simplified explanations of many complex issues, on the other side, this book provides graduate students and researchers with a comprehensive introduction on the state of the art and a source of inspiration for future research. Moreover, the proposed concepts and methods can be extended to the simulation of multiphysical phenomena in different application contexts.

Nanoelectronic Coupled Problems Solutions

Nanoelectronic Coupled Problems Solutions
Title Nanoelectronic Coupled Problems Solutions PDF eBook
Author E. Jan W. ter Maten
Publisher Springer Nature
Pages 587
Release 2019-11-06
Genre Mathematics
ISBN 3030307263

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Designs in nanoelectronics often lead to challenging simulation problems and include strong feedback couplings. Industry demands provisions for variability in order to guarantee quality and yield. It also requires the incorporation of higher abstraction levels to allow for system simulation in order to shorten the design cycles, while at the same time preserving accuracy. The methods developed here promote a methodology for circuit-and-system-level modelling and simulation based on best practice rules, which are used to deal with coupled electromagnetic field-circuit-heat problems, as well as coupled electro-thermal-stress problems that emerge in nanoelectronic designs. This book covers: (1) advanced monolithic/multirate/co-simulation techniques, which are combined with envelope/wavelet approaches to create efficient and robust simulation techniques for strongly coupled systems that exploit the different dynamics of sub-systems within multiphysics problems, and which allow designers to predict reliability and ageing; (2) new generalized techniques in Uncertainty Quantification (UQ) for coupled problems to include a variability capability such that robust design and optimization, worst case analysis, and yield estimation with tiny failure probabilities are possible (including large deviations like 6-sigma); (3) enhanced sparse, parametric Model Order Reduction techniques with a posteriori error estimation for coupled problems and for UQ to reduce the complexity of the sub-systems while ensuring that the operational and coupling parameters can still be varied and that the reduced models offer higher abstraction levels that can be efficiently simulated. All the new algorithms produced were implemented, transferred and tested by the EDA vendor MAGWEL. Validation was conducted on industrial designs provided by end-users from the semiconductor industry, who shared their feedback, contributed to the measurements, and supplied both material data and process data. In closing, a thorough comparison to measurements on real devices was made in order to demonstrate the algorithms’ industrial applicability.

Scientific Computing in Electrical Engineering

Scientific Computing in Electrical Engineering
Title Scientific Computing in Electrical Engineering PDF eBook
Author Martijn van Beurden
Publisher Springer Nature
Pages 239
Release
Genre
ISBN 3031545176

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Modeling, Simulation and Optimization of Complex Processes HPSC 2018

Modeling, Simulation and Optimization of Complex Processes HPSC 2018
Title Modeling, Simulation and Optimization of Complex Processes HPSC 2018 PDF eBook
Author Hans Georg Bock
Publisher Springer Nature
Pages 402
Release 2020-12-01
Genre Mathematics
ISBN 3030552403

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This proceedings volume highlights a selection of papers presented at the 7th International Conference on High Performance Scientific Computing, which took place in Hanoi, Vietnam, during March 19-23, 2018. The conference has been organized by the Institute of Mathematics of the Vietnam Academy of Science and Technology, the Interdisciplinary Center for Scientific Computing (IWR) of Heidelberg University and the Vietnam Institute for Advanced Study in Mathematics. The contributions cover a broad, interdisciplinary spectrum of scientific computing and showcase recent advances in theory, methods, and practical applications. Subjects covered include numerical simulation, methods for optimization and control, machine learning, parallel computing and software development, as well as the applications of scientific computing in mechanical engineering, airspace engineering, environmental physics, decision making, hydrogeology, material science and electric circuits.

Scientific Computing in Electrical Engineering

Scientific Computing in Electrical Engineering
Title Scientific Computing in Electrical Engineering PDF eBook
Author Ulrich Langer
Publisher Springer
Pages 271
Release 2018-04-23
Genre Mathematics
ISBN 3319755382

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This collection of selected papers presented at the 11th International Conference on Scientific Computing in Electrical Engineering (SCEE), held in St. Wolfgang, Austria, in 2016, showcases the state of the art in SCEE. The aim of the SCEE 2016 conference was to bring together scientists from academia and industry, mathematicians, electrical engineers, computer scientists, and physicists, and to promote intensive discussions on industrially relevant mathematical problems, with an emphasis on the modeling and numerical simulation of electronic circuits and devices, electromagnetic fields, and coupled problems. The focus in methodology was on model order reduction and uncertainty quantification. This extensive reference work is divided into six parts: Computational Electromagnetics, Circuit and Device Modeling and Simulation, Coupled Problems and Multi‐Scale Approaches in Space and Time, Mathematical and Computational Methods Including Uncertainty Quantification, Model Order Reduction, and Industrial Applications. Each part starts with a general introduction, followed by the respective contributions. This book will appeal to mathematicians and electrical engineers. Further, it introduces algorithm and program developers to recent advances in the other fields, while industry experts will be introduced to new programming tools and mathematical methods.