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    1. Naturvetenskap och teknik
    2. Matematik och naturvetenskap
    3. Fysik
    4. Elektricitet och magnetism

    Advances in Time-Domain Computational Electromagnetic Methods

    AvQiang Ren,Qiang Ren

    Inbunden, Engelska, 2022

    Del i serien IEEE Press Series on Electromagnetic Wave Theory and Applications

    1 512 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Advances in Time-Domain Computational Electromagnetic Methods Discover state-of-the-art time domain electromagnetic modeling and simulation algorithms Advances in Time-Domain Computational Electromagnetic Methods delivers a thorough exploration of recent developments in time domain computational methods for solving complex electromagnetic problems. The book discusses the main time domain computational electromagnetics techniques, including finite-difference time domain (FDTD), finite-element time domain (FETD), discontinuous Galerkin time domain (DGTD), time domain integral equation (TDIE), and other methods in electromagnetic, multiphysics modeling and simulation, and antenna designs. The book bridges the gap between academic research and real engineering applications by comprehensively surveying the full picture of current state-of-the-art time domain electromagnetic simulation techniques. Among other topics, it offers readers discussions of automatic load balancing schemes for DG-FETD/SETD methods and convolution quadrature time domain integral equation methods for electromagnetic scattering. Advances in Time-Domain Computational Electromagnetic Methods also includes: Introductions to cylindrical, spherical, and symplectic FDTD, as well as FDTD for metasurfaces with GSTC and FDTD for nonlinear metasurfacesExplorations of FETD for dispersive and nonlinear media and SETD-DDM for periodic/ quasi-periodic arraysDiscussions of TDIE, including explicit marching-on-in-time solvers for second-kind time domain integral equations, TD-SIE DDM, and convolution quadrature time domain integral equation methods for electromagnetic scatteringTreatments of deep learning, including time domain electromagnetic forward and inverse modeling using a differentiable programming platformIdeal for undergraduate and graduate students studying the design and development of various kinds of communication systems, as well as professionals working in these fields, Advances in Time-Domain Computational Electromagnetic Methods is also an invaluable resource for those taking advanced graduate courses in computational electromagnetic methods and simulation techniques.

    Produktinformation

    • Utgivningsdatum:2022-11-16
    • Mått:157 x 235 x 43 mm
    • Vikt:1 220 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:IEEE Press Series on Electromagnetic Wave Theory and Applications
    • Antal sidor:720
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119808374

    Utforska kategorier

    • Elektricitet och magnetism inom Naturvetenskap och teknik

    Mer om författaren

    QIANG REN, PhD, is Associate Professor at the Electronics and Information Engineering School of Beihang University, Beijing. He has authored or coauthored over 80 papers in refereed journals and conferences. SU YAN, PhD, is an Assistant Professor and Director of Graduate Studies in the Department of Electrical Engineering and Computer Science at Howard University, Washington, DC. He is a Senior Member of IEEE and a Life Member of the Applied Computational Electromagnetics Society. ATEF Z. ELSHERBENI, PhD, is a Professor of the Electrical Engineering Department at the Colorado School of Mines. He is a Life IEEE Fellow and a Fellow of Applied Computational Electromagnetic Society.

    Innehållsförteckning

    • About the Editors xviiList of Contributors xxiPreface xxviiPart I Time-Domain Methods for Analyzing Nonlinear Phenomena 11 Integration of Nonlinear Circuit Elements into FDTD Method Formulation 3Joshua M. Kast and Atef Z. Elsherbeni2 FDTD Method for Nonlinear Metasurface Analysis 33Xibi Chen and Fan Yang3 The Finite-Element Time-Domain Method for Dispersive and Nonlinear Media 81David S. Abraham, Ali Akbarzadeh-Sharbaf, and Dennis D. GiannacopoulosPart II Time-Domain Methods for Multiphysics and Multiscale Modeling 1354 Discontinuous Galerkin Time-Domain Method in Electromagnetics: From Nanostructure Simulations to Multiphysics Implementations 137Ming Dong, Liang Chen, Ping Li, Lijun Jiang, and Hakan Bagci5 Adaptive Discontinuous Galerkin Time-Domain Method for the Modeling and Simulation of Electromagnetic and Multiphysics Problems 199Su Yan6 DGTD Method for Periodic and Quasi-Periodic Structures 239Pengfei Wen, Chao Li, Qiang Ren, and Jiefu ChenPart III Time-Domain Integral Equation Methods for Scattering Analysis 2757 Explicit Marching-on-in-time Solvers for Second-kind Time Domain Integral Equations 277Rui Chen, Sadeed B. Sayed, Huseyin A. Ulku, and Hakan Bagci8 Convolution Quadrature Time Domain Integral Equation Methods for Electromagnetic Scattering 321Alexandre Dely, Adrien Merlini, Kristof Cools, and Francesco P. Andriulli9 Solving Electromagnetic Scattering Problems Using Impulse Responses 361Gaobiao Xiao, Yuyang Hu, Xuezhe Tian, Shifeng Huang, and Rui LiuPart IV Applications of Deep Learning in Time-Domain Methods 39510 Time-Domain Electromagnetic Forward and Inverse Modeling Using a Differentiable Programming Platform 397Yanyan Hu, Yuchen Jin, Xuqing Wu, and Jiefu Chen11 Machine Learning Application for Modeling and Design Optimization of High Frequency Structures 423Mohamed H. Bakr, Shirook Ali, and Atef Z. ElsherbeniPart V Parallel Computation Schemes for Time-Domain Methods 45312 Acceleration of FDTD Code Using MATLAB's Parallel Computing Toolbox 455Alec Weiss, Atef Z. Elsherbeni, Veysel Demir, and Mohammed Hadi13 Parallel Subdomain-Level Discontinuous Galerkin Time Domain Method 491Jiamei Mi, Kaiming Wu, Yunfeng Jia, Wei Zhang, and Qiang Ren14 Alternate Parallelization Strategies for FETD Formulations 525Amir Akbari, David S. Abraham, and Dennis D. GiannacopoulosPart VI Multidisciplinary Explorations of Time-Domain Methods 55715 The Symplectic FDTD Method for Maxwell and Schrodinger Equations 559Zhixiang Huang, Guoda Xie, Xingang Ren, and Wei E.I. Sha16 Cylindrical FDTD Formulation for Low Frequency Applications 611Abdullah Algarni, Atef Z. Elsherbeni, and Mohammed Hadi