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Scientific Computing in Electrical Engineering: Scee 2018, Taormina, Italy, September 2018, Nicosia Giuseppe, Romano Vittorio


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Автор: Nicosia Giuseppe, Romano Vittorio
Название:  Scientific Computing in Electrical Engineering: Scee 2018, Taormina, Italy, September 2018
ISBN: 9783030441005
Издательство: Springer
Классификация:




ISBN-10: 3030441008
Обложка/Формат: Hardcover
Страницы: 288
Вес: 0.60 кг.
Дата издания: 11.09.2020
Серия: Mathematics in industry
Язык: English
Издание: 1st ed. 2020
Иллюстрации: 97 illustrations, color; 11 illustrations, black and white; xvi, 288 p. 108 illus., 97 illus. in color.
Размер: 23.39 x 15.60 x 1.91 cm
Читательская аудитория: Professional & vocational
Подзаголовок: Scee 2018, taormina, italy, september 2018
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: Computational Electromagnetics.- Device Modeling and Simulation.- Circuit Simulation.- Mathematical and Computational Methods.- Model Order Reduction.- Index.

Scientific Computing in Electrical Engineering SCEE 2008

Автор: Luis R.J. Costa; Janne Roos
Название: Scientific Computing in Electrical Engineering SCEE 2008
ISBN: 3662519771 ISBN-13(EAN): 9783662519776
Издательство: Springer
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Цена: 191550.00 T
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Описание: Computational Electromagnetics.- to Part I.- Challenges and Approaches in EMC Modeling of Wireless Consumer Devices.- A New Adaptive Approach to Modeling Measured Multi-Port Scattering Parameters.- Parametric Models of Transmission Lines Based on First Order Sensitivities.- Domain Partitioning Based Parametric Models for Passive On-Chip Components.- A Novel Graphical Based Tool for Extraction of Magnetic Reluctances Between On-Chip Current Loops.- A Robust Technique for Modelling Nonlinear Lumped Elements Spanning Multiple Cells in FDTD.- Computation of Eigenmodes in Periodic Structures with Dispersive Materials.- Region-Oriented BEM Formulation for Numerical Computations of Electric Fields.- Surface Integrated Field Equations Method to Solve 3D Electromagnetic Problems.- Reduced Basis Method for Electromagnetic Field Computations.- Using Nudg++ to Solve Poisson's Equation on Unstructured Grids.- Magnetic Force Calculations Applied to Magnetic Force Microscopy.- Relativistic High Order Particle Treatment for Electromagnetic Particle-In-Cell Simulations.- A Statistical Characterization of Resonant Electromagnetic Interactions with Thin Wires: Variance and Kurtosis Analysis.- Circuit Simulation.- to Part II.- Wavelets in Circuit Simulation.- On Local Handling of Inner Equations in Compact Models.- Hybrid Analysis of Nonlinear Time-Varying Circuits Providing DAEs with Index at Most One.- Transient Analysis of Nonlinear Circuits Based on Waves.- Simultaneous Step-Size and Path Control for Efficient Transient Noise Analysis.- Nonlinear Distortion in Differential Circuits with Single-Ended and Balanced Drive.- Evaluation of Oscillator Phase and Frequency Transfer Functions.- Polynomial Chaos for the Computation of Failure Probabilities in Periodic Problems.- Quasiperiodic Steady-State Analysis of Electronic Circuits by a Spline Basis.- Accurate Simulation of the Devil's Staircase of an Injection-Locked Frequency Divider.- ANN/DNN-Based Behavioral Modeling of RF/Microwave Components and Circuits.- Surrogate Modeling of Low Noise Amplifiers Based on Transistor Level Simulations.- Computational Statistics Approach to Capacitance Sensitivity Analysis and Gate Delay Time Minimization of TFT-LCDs.- Lookup-Table Based Settling Error Modeling in SIMULINK.- Speed-Up Techniques for Time-Domain System Simulations.- Coupled Problems.- to Part III.- Heating of Semiconductor Devices in Electric Circuits.- Analysis of a PDE Thermal Element Model for Electrothermal Circuit Simulation.- Automatic Thermal Network Extraction and Multiscale Electro-Thermal Simulation.- Simulations of an Electron-Phonon Hydrodynamical Model Based on the Maximum Entropy Principle.- Consistent Initialization for Coupled Circuit-Device Simulation.- Hyperbolic PDAEs for Semiconductor Devices Coupled with Circuits.- Large-Scale Atomistic Circuit-Device Coupled Simulation of Discrete-Dopant-Induced Characteristic Fluctuation in Nano-CMOS Digital Circuits.- Evaluation of Electromagnetic Coupling Between Microelectronic Device Structures Using Computational Electrodynamics.- Evaluation of Domain Decomposition Approach for Compact Simulation of On-Chip Coupled Problems.- DAE-Index and Convergence Analysis of Lumped Electric Circuits Refined by 3-D Magnetoquasistatic Conductor Models.- Mathematical and Computational Methods.- to Part IV.- Numerical Time Integration in Quasistatic Computational Electromagnetics.- A Novel Staggered Finite Volume Time Domain Method.- EM Scattering Calculations Using Potentials.- New Trends in the Preconditioning of Integral Equations of Electromagnetism.- Simulation of Large Interconnect Structures Using ILU-Type Preconditioner.- High-Order Discontinuous Galerkin Methods for Computational Electromagnetics and Uncertainty Quantification.- Efficient Simulation of Large-scale Dynamical Systems Using Tensor Decompositions.- Robust FETI Solvers for Multiscale Elliptic PDEs.- Nonlinear Models for Silicon Semiconductors.- Multiobjective O

Scientific Computing in Electrical Engineering SCEE 2008

Автор: Luis R.J. Costa; Janne Roos
Название: Scientific Computing in Electrical Engineering SCEE 2008
ISBN: 3642122930 ISBN-13(EAN): 9783642122934
Издательство: Springer
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Цена: 232910.00 T
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Описание: A collection of 65 selected papers presented at the 7th International Conference on Scientific Computing in Electrical Engineering (SCEE), held in Espoo, Finland, in 2008.

Scientific Computing in Electrical Engineering SCEE 2010

Автор: Bas Michielsen; Jean-Ren? Poirier
Название: Scientific Computing in Electrical Engineering SCEE 2010
ISBN: 3642447244 ISBN-13(EAN): 9783642447242
Издательство: Springer
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Цена: 153720.00 T
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Описание: This selection of papers from the 8th SCEE conference held in Toulouse in 2010 covers every angle of numerically modeling electronic and electrical systems, including computational electromagnetics, circuit theory and simulation and device modeling.

Scientific Computing in Electrical Engineering

Автор: Andreas Bartel; Markus Clemens; Michael G?nther; E
Название: Scientific Computing in Electrical Engineering
ISBN: 3319303988 ISBN-13(EAN): 9783319303987
Издательство: Springer
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Цена: 111790.00 T
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Scientific Computing in Electrical Engineering

Автор: Wilhelmus H. Schilders
Название: Scientific Computing in Electrical Engineering
ISBN: 3540213724 ISBN-13(EAN): 9783540213727
Издательство: Springer
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Цена: 158380.00 T
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Описание: The fourth international conference on Scientific Computing in Electrical En- gineering (SCEE) was held at the Eindhoven University of Technology, from 23rd to 28th June, 2002. It was sponsored by Philips Research Laborato- ries Eindhoven, the Eindhoven University of Technology, Computer Simula- tion Technology (CST) from Darmstadt, ABB Corporate Research, Thales Netherlands, the European Consortium for Mathematics in Industry (ECMI), the University of Rostock (organiser of SCEE-2000), the European network for Mathematics, Computing and Simulation for Industry (MACSI-net), the Royal Netherlands Academy of Arts and Sciences (KNAW), and the Scien- tific Computing Group of the Eindhoven University of Technology. The Program Committee consisted of: Dr. Alain Bossavit, Electricite de France, Clamart, France. Dr. Uwe Feldmann, Infineon Technologies A.G., Munich, Germany. Prof.Dr. Leszek Demkowicz, University of Texas at Austin, USA. Dr. Michael Gunther, Universitat Karlsruhe, Germany. Prof.Dr. Ulrich Langer, Johannes Kepler Universitat, Linz, Austria. Dr. Jan ter Maten, Philips Research Laboratories Eindhoven, The Nether- lands. Prof.Dr. Ursula van Rienen, Universitat Rostock, Germany. Prof.Dr. Jaijeet Roychowdhury, University of Minnesota, USA. - Prof.Dr. Wil Schilders, Technische Universiteit Eindhoven and Philips Research Laboratories Eindhoven, The Netherlands. - Prof.Dr. Thomas Weiland, Technische Universitat Darmstadt, Germany.

Scientific Computing in Electrical Engineering

Автор: Wilhelmus H. Schilders; E. Jan W. ter Maten; Steph
Название: Scientific Computing in Electrical Engineering
ISBN: 3642624782 ISBN-13(EAN): 9783642624780
Издательство: Springer
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Цена: 81050.00 T
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Scientific Computing in Electrical Engineering

Автор: G. Ciuprina; D. Ioan
Название: Scientific Computing in Electrical Engineering
ISBN: 3662518414 ISBN-13(EAN): 9783662518410
Издательство: Springer
Рейтинг:
Цена: 139750.00 T
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Описание: The series of SCEE conferences aims at addressing mathematical problems which have a relevance to industry, with an emphasis on modeling and numerical simulation of electronic circuits, electromagnetic fields but also coupled problems and general mathematical and computational methods.

Scientific Computing in Electrical Engineering

Автор: Langer
Название: Scientific Computing in Electrical Engineering
ISBN: 3319755374 ISBN-13(EAN): 9783319755373
Издательство: Springer
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Цена: 93160.00 T
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Описание:

Foreword.- Preface.- Acknowledgements.- Part I Computational Electromagnetics: 1 Preliminary Numerical Study on Electrical Stimulation at Alloplastic Reconstruction Plates of the Mandible by Ursula van Rienen et al.- 2 Evaluation of Capacitive EMG Sensor Geometries by Simulation and Measurement by Theresa Roland et al.- 3 Stability Analysis of Electromagnetic Transient Simulations by Wim Schoenmaker et al.- 4 Sensitivity of Lumped Parameters to Geometry Changes in Finite Element Models by Sebastian Schuhmacher et al.- 5 Electro-Thermal Simulations with Skin-Layers and Contacts by Christoph Winkelmann et al.- Part II Circuit and Device Modelling & Simulation: 6 Gradient-Enhanced Polynomial Chaos Methods for Circuit Simulation by Eric R. Keiter et al.- 7 Coupled Circuit Device Simulation by Kai Bittner et al.- Part III Coupled Problems and Multi-Scale Approaches in Space and Time: 8 Density Estimation Techniques in Cosimulation Using Spectral- and Kernel Methods by Kai Gausling et al.- 9 Multirate DAE/ODE-Simulation and Model Order Reduction for Coupled Field-Circuit Systems by Christoph Hachtel et al.- 10 Modelling and Simulation of Electrically Controlled Droplet Dynamics by Yun Ouйdraogo et al.- Part IV Mathematical and Computational Methods Including Uncertainty Quantification: 11 Multirate Shooting Method with Frequency Sweep for Circuit Simulation by Kai Bittner et al.- 12 A Trefftz Method for the Time-Harmonic Eddy Current Equation by Raffael Casagrande et al.- 13 Survey on Semi-Explicit Time Integration of Eddy Current Problems by Jennifer Dutinй et al.- 14 A Local Mesh Modification Strategy for Interface Problems with Application to Shape and Topology Optimization by Peter Gangl et al.- 15 Numerical Methods for Derivative-Based Global Sensitivity Analysis in High Dimensions by Qingzhe Liu et al.- 16 Fitting Generalized Gaussian Distributions for Process Capability Index by Theo G.J. Beelen et al.- 17 Robust Optimization of an RFIC Isolation Problem Under Uncertainties by Piotr Putek et al.- Part V Model Order Reduction: 18 Sparse Model Order Reduction for Electro-Thermal Problems with Many Inputs by Nicodemus Banagaaya et al.- 19 Quadrature Methods and Model Order Reduction for Sparse Approximations in Random Linear Dynamical Systems by Roland Pulch.- 20 POD-Based Reduced-Order Model of an Eddy-Current Levitation Problem by MD Rokibul Hasan et al.- 21 Time-Domain Reduced-Order Modelling of Linear Finite-Element Eddy-Current Problems via RL-Ladder Circuits by Ruth V. Sabariego et al.- Part VI Industrial Applications: 22 A Lagrangian Approach to the Simulation of a Constricted Vacuum Arc in a Magnetic Field by Massimiliano Cremonesi et al.- 23 Virtual High Voltage Lab by Andreas Blaszczyk et al.- Index.


Scientific Computing in Electrical Engineering

Автор: Ulrich Langer; Wolfgang Amrhein; Walter Zulehner
Название: Scientific Computing in Electrical Engineering
ISBN: 3030092593 ISBN-13(EAN): 9783030092597
Издательство: Springer
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Цена: 135090.00 T
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Описание: 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.


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