Time Domain Methods in Electrodynamics

Time Domain Methods in Electrodynamics
Author :
Publisher : Springer Science & Business Media
Total Pages : 423
Release :
ISBN-10 : 9783540687689
ISBN-13 : 3540687688
Rating : 4/5 (89 Downloads)

Synopsis Time Domain Methods in Electrodynamics by : Peter Russer

This book consists of contributions given in honor of Wolfgang J.R. Hoefer. Space and time discretizing time domain methods for electromagnetic full-wave simulation have emerged as key numerical methods in computational electromagnetics. Time domain methods are versatile and can be applied to the solution of a wide range of electromagnetic field problems. Computing the response of an electromagnetic structure to an impulsive excitation localized in space and time provides a comprehensive characterization of the electromagnetic properties of the structure in a wide frequency range. The most important methods are the Finite Difference Time Domain (FDTD) and the Transmission Line Matrix (TLM) methods. The contributions represent the state of the art in dealing with time domain methods in modern engineering electrodynamics for electromagnetic modeling in general, the Transmission Line Matrix (TLM) method, the application of network concepts to electromagnetic field modeling, circuit and system applications and, finally, with broadband devices, systems and measurement techniques.

Time-Domain Methods for Microwave Structures

Time-Domain Methods for Microwave Structures
Author :
Publisher : Wiley-IEEE Press
Total Pages : 552
Release :
ISBN-10 : UOM:39015041614770
ISBN-13 :
Rating : 4/5 (70 Downloads)

Synopsis Time-Domain Methods for Microwave Structures by : Tatsuo Itoh

"This book thoroughly explains the application of Finite-difference Time-domain (FDTD) method to microwave structures. Providing the reader with the most comprehensive collection of material available on this subject, each chapter is composed of an introductory section that addresses the theoretical background of a specific component of the FDTD method and a collection of reprints of the most important papers. Each chapter is contributed by a well-known authority in the field and contains illustrative examples. Topics covered include: * The numerical issues * Geometry description of microwave structures * Methods to reduce the requirements for excessive computational resources * Parallel and vector processing All the topics covered in this book are essential components for successful application of the FDTD method to realistic structures."

Time-domain Modeling of Microwave Structures by Method of Moments

Time-domain Modeling of Microwave Structures by Method of Moments
Author :
Publisher :
Total Pages : 24
Release :
ISBN-10 : 8021437480
ISBN-13 : 9788021437487
Rating : 4/5 (80 Downloads)

Synopsis Time-domain Modeling of Microwave Structures by Method of Moments by : Vysoké učení technické v Brně. Ústav radioelektroniky

The RF and Microwave Handbook

The RF and Microwave Handbook
Author :
Publisher : CRC Press
Total Pages : 1377
Release :
ISBN-10 : 9781420036763
ISBN-13 : 1420036769
Rating : 4/5 (63 Downloads)

Synopsis The RF and Microwave Handbook by : Mike Golio

The recent shift in focus from defense and government work to commercial wireless efforts has caused the job of the typical microwave engineer to change dramatically. The modern microwave and RF engineer is expected to know customer expectations, market trends, manufacturing technologies, and factory models to a degree that is unprecedented in the

The RF and Microwave Handbook - 3 Volume Set

The RF and Microwave Handbook - 3 Volume Set
Author :
Publisher : CRC Press
Total Pages : 2208
Release :
ISBN-10 : 9781439833230
ISBN-13 : 1439833230
Rating : 4/5 (30 Downloads)

Synopsis The RF and Microwave Handbook - 3 Volume Set by : Mike Golio

By 1990 the wireless revolution had begun. In late 2000, Mike Golio gave the world a significant tool to use in this revolution: The RF and Microwave Handbook. Since then, wireless technology spread across the globe with unprecedented speed, fueled by 3G and 4G mobile technology and the proliferation of wireless LANs. Updated to reflect this tremendous growth, the second edition of this widely embraced, bestselling handbook divides its coverage conveniently into a set of three books, each focused on a particular aspect of the technology. Six new chapters cover WiMAX, broadband cable, bit error ratio (BER) testing, high-power PAs (power amplifiers), heterojunction bipolar transistors (HBTs), as well as an overview of microwave engineering. Over 100 contributors, with diverse backgrounds in academic, industrial, government, manufacturing, design, and research reflect the breadth and depth of the field. This eclectic mix of contributors ensures that the coverage balances fundamental technical issues with the important business and marketing constraints that define commercial RF and microwave engineering. Focused chapters filled with formulas, charts, graphs, diagrams, and tables make the information easy to locate and apply to practical cases. The new format, three tightly focused volumes, provides not only increased information but also ease of use. You can find the information you need quickly, without wading through material you don’t immediately need, giving you access to the caliber of data you have come to expect in a much more user-friendly format.

RF and Microwave Circuits, Measurements, and Modeling

RF and Microwave Circuits, Measurements, and Modeling
Author :
Publisher : CRC Press
Total Pages : 772
Release :
ISBN-10 : 9781420006704
ISBN-13 : 1420006703
Rating : 4/5 (04 Downloads)

Synopsis RF and Microwave Circuits, Measurements, and Modeling by : Mike Golio

Highlighting the challenges RF and microwave circuit designers face in their day-to-day tasks, RF and Microwave Circuits, Measurements, and Modeling explores RF and microwave circuit designs in terms of performance and critical design specifications. The book discusses transmitters and receivers first in terms of functional circuit block and then examines each block individually. Separate articles consider fundamental amplifier issues, low noise amplifiers, power amplifiers for handset applications and high power, power amplifiers. Additional chapters cover other circuit functions including oscillators, mixers, modulators, phase locked loops, filters and multiplexers. New chapters discuss high-power PAs, bit error rate testing, and nonlinear modeling of heterojunction bipolar transistors, while other chapters feature new and updated material that reflects recent progress in such areas as high-volume testing, transmitters and receivers, and CAD tools. The unique behavior and requirements associated with RF and microwave systems establishes a need for unique and complex models and simulation tools. The required toolset for a microwave circuit designer includes unique device models, both 2D and 3D electromagnetic simulators, as well as frequency domain based small signal and large signal circuit and system simulators. This unique suite of tools requires a design procedure that is also distinctive. This book examines not only the distinct design tools of the microwave circuit designer, but also the design procedures that must be followed to use them effectively.

MRTD (Multi Resolution Time Domain) Method in Electromagnetics

MRTD (Multi Resolution Time Domain) Method in Electromagnetics
Author :
Publisher : Springer Nature
Total Pages : 108
Release :
ISBN-10 : 9783031016875
ISBN-13 : 3031016874
Rating : 4/5 (75 Downloads)

Synopsis MRTD (Multi Resolution Time Domain) Method in Electromagnetics by : Nathan Bushyager

This book presents a method that allows the use of multiresolution principles in a time domain electromagnetic modeling technique that is applicable to general structures. The multiresolution time-domain (MRTD) technique, as it is often called, is presented for general basis functions. Additional techniques that are presented here allow the modeling of complex structures using a subcell representation that permits the modeling discrete electromagnetic effects at individual equivalent grid points. This is accomplished by transforming the application of the effects at individual points in the grid into the wavelet domain. In this work, the MRTD technique is derived for a general wavelet basis using a relatively compact vector notation that both makes the technique easier to understand and illustrates the differences between MRTD basis functions. In addition, techniques such as the uniaxial perfectly matched layer (UPML) for arbitrary wavelet resolution and non-uniform gridding are presented. Using these techniques, any structure that can be simulated in Yee-FDTD can be modeled with in MRTD.

The Finite-Difference Time-Domain Method for Electromagnetics with MATLAB® Simulations

The Finite-Difference Time-Domain Method for Electromagnetics with MATLAB® Simulations
Author :
Publisher : IET
Total Pages : 559
Release :
ISBN-10 : 9781613531754
ISBN-13 : 1613531753
Rating : 4/5 (54 Downloads)

Synopsis The Finite-Difference Time-Domain Method for Electromagnetics with MATLAB® Simulations by : Atef Z. Elsherbeni

This is one of the best books on computational electromagnetics both for graduate students focusing on electromagnetics problems and for practicing engineering professionals in industry and government. It is designed as an advanced textbook and self-study guide to the FDTD method of solving EM problems and simulations. This latest edition has been expanded to include 5 entirely new chapters on advanced topics in the mainstream of FDTD practice. In addition to advanced techniques it also includes applications and examples, and some 'tricks and traps' of using MATLAB to achieve them. Compared to the previous version the second edition is more complete and is a good reference for someone who is performing FDTD research. This book is part of the ACES Series on Computational Electromagnetics and Engineering. Supplementary material can be found at the IET's ebook page Supplementary materials for professors are available upon request via email to [email protected].

Modern EMC Analysis Techniques Volume I

Modern EMC Analysis Techniques Volume I
Author :
Publisher : Springer Nature
Total Pages : 224
Release :
ISBN-10 : 9783031017056
ISBN-13 : 3031017056
Rating : 4/5 (56 Downloads)

Synopsis Modern EMC Analysis Techniques Volume I by : Nikolaos Kantartzis

The objective of this two-volume book is the systematic and comprehensive description of the most competitive time-domain computational methods for the efficient modeling and accurate solution of contemporary real-world EMC problems. Intended to be self-contained, it performs a detailed presentation of all well-known algorithms, elucidating on their merits or weaknesses, and accompanies the theoretical content with a variety of applications. Outlining the present volume, the analysis covers the theory of the finite-difference time-domain, the transmission-line matrix/modeling, and the finite integration technique. Moreover, alternative schemes, such as the finite-element, the finitevolume, the multiresolution time-domain methods and many others, are presented, while particular attention is drawn to hybrid approaches. To this aim, the general aspects for the correct implementation of the previous algorithms are also exemplified. At the end of every section, an elaborate reference on the prominent pros and possible cons, always in the light of EMC modeling, assists the reader to retrieve the gist of each formulation and decide on his/her best possible selection according to the problem under investigation. Table of Contents: Fundamental Time-Domain Methodologies for EMC Analysis / Alternative Time-Domain Techniques in EMC Modeling / Principal Implementation Issues of Time-Domain EMC Simulation

Simulation-driven Design Optimization And Modeling For Microwave Engineering

Simulation-driven Design Optimization And Modeling For Microwave Engineering
Author :
Publisher : World Scientific
Total Pages : 526
Release :
ISBN-10 : 9781848169227
ISBN-13 : 1848169221
Rating : 4/5 (27 Downloads)

Synopsis Simulation-driven Design Optimization And Modeling For Microwave Engineering by : Qi-jun Zhang

Computer-aided full-wave electromagnetic (EM) analysis has been used in microwave engineering for the past decade. Initially, its main application area was design verification. Today, EM-simulation-driven optimization and design closure become increasingly important due to the complexity of microwave structures and increasing demands for accuracy. In many situations, theoretical models of microwave structures can only be used to yield the initial designs that need to be further fine-tuned to meet given performance requirements. In addition, EM-based design is a must for a growing number of microwave devices such as ultra-wideband (UWB) antennas, dielectric resonator antennas and substrate-integrated circuits. For circuits like these, no design-ready theoretical models are available, so design improvement can only be obtained through geometry adjustments based on repetitive, time-consuming simulations. On the other hand, various interactions between microwave devices and their environment, such as feeding structures and housing, must be taken into account, and this is only possible through full-wave EM analysis.Electromagnetic simulations can be highly accurate, but they tend to be computationally expensive. Therefore, practical design optimization methods have to be computationally efficient, so that the number of CPU-intensive high-fidelity EM simulations is reduced as much as possible during the design process. For the same reasons, techniques for creating fast yet accurate models of microwave structures become crucially important.In this edited book, the authors strive to review the state-of-the-art simulation-driven microwave design optimization and modeling. A group of international experts specialized in various aspects of microwave computer-aided design summarize and review a wide range of the latest developments and real-world applications. Topics include conventional and surrogate-based design optimization techniques, methods exploiting adjoint sensitivity, simulation-based tuning, space mapping, and several modeling methodologies, such as artificial neural networks and kriging. Applications and case studies include microwave filters, antennas, substrate integrated structures and various active components and circuits. The book also contains a few introductory chapters highlighting the fundamentals of optimization and modeling, gradient-based and derivative-free algorithms, metaheuristics, and surrogate-based optimization techniques, as well as finite difference and finite element methods./a