Adaptive Mesh Refinement in Time-Domain Numerical Electromagnetics
暫譯: 時間域數值電磁學中的自適應網格細化
Sarris
- 出版商: Morgan & Claypool
- 出版日期: 2006-09-30
- 售價: $1,930
- 貴賓價: 9.5 折 $1,834
- 語言: 英文
- 頁數: 154
- ISBN: 1598293915
- ISBN-13: 9781598293913
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相關分類:
電磁學 Electromagnetics
海外代購書籍(需單獨結帳)
商品描述
Description
This monograph is a comprehensive presentation of state-of-the-art methodologies that can dramatically enhance the efficiency of the finite-difference time-domain (FDTD) technique, the most popular electromagnetic field solver of the time-domain form of Maxwell's equations. These methodologies are aimed at optimally tailoring the computational resources needed for the wideband simulation of microwave and optical structures to their geometry, as well as the nature of the field solutions they support. That is achieved by the development of robust "adaptive meshing" approaches, which amount to varying the total number of unknown field quantities in the course of the simulation to adapt to temporally or spatially localized field features. While mesh adaptation is an extremely desirable FDTD feature, known to reduce simulation times by orders of magnitude, it is not always robust. The specific techniques presented in this book are characterized by stability and robustness. Therefore, they are excellent computer analysis and design (CAD) tools.
The book starts by introducing the FDTD technique, along with challenges related to its application to the analysis of real-life microwave and optical structures. It then proceeds to developing an adaptive mesh refinement method based on the use of multiresolution analysis and, more specifically, the Haar wavelet basis. Furthermore, a new method to embed a moving adaptive mesh in FDTD, the dynamically adaptive mesh refinement (AMR) FDTD technique, is introduced and explained in detail. To highlight the properties of the theoretical tools developed in the text, a number of applications are presented, including: Microwave integrated circuits (microstrip filters, couplers, spiral inductors, cavities).
Optical power splitters, Y-junctions, and couplers
Optical ring resonators
Nonlinear optical waveguides.
Building on first principles of time-domain electromagnetic simulations, this book presents advanced concepts and cutting-edge modeling techniques in an intuitive way for programmers, engineers, and graduate students. It is designed to provide a solid reference for highly efficient time-domain solvers, employed in a wide range of exciting applications in microwave/millimeter-wave and optical engineering.
商品描述(中文翻譯)
**描述**
這本專著全面介紹了最先進的方法論,這些方法能顯著提升有限差分時域(FDTD)技術的效率,FDTD是當前最受歡迎的馬克士威方程時域形式的電磁場求解器。這些方法旨在根據幾何形狀以及所支持的場解的特性,最佳化所需的計算資源,以進行微波和光學結構的寬頻模擬。這是通過開發穩健的「自適應網格」方法來實現的,這些方法在模擬過程中變化未知場量的總數,以適應時間或空間上局部化的場特徵。雖然網格自適應是FDTD的一個極其理想的特性,已知能將模擬時間縮短數個量級,但它並不總是穩健。本書中介紹的具體技術以穩定性和穩健性為特徵,因此它們是優秀的計算分析和設計(CAD)工具。
本書首先介紹FDTD技術及其在分析實際微波和光學結構時所面臨的挑戰。接著,發展了一種基於多解析度分析的自適應網格細化方法,更具體地說,是基於Haar小波基。進一步介紹並詳細解釋了一種在FDTD中嵌入移動自適應網格的新方法,即動態自適應網格細化(AMR)FDTD技術。為了突出文本中開發的理論工具的特性,介紹了多個應用,包括:微波集成電路(微帶濾波器、耦合器、螺旋電感、腔體)。
光學功率分配器、Y型接頭和耦合器
光學環形共振腔
非線性光學波導。
基於時域電磁模擬的基本原理,本書以直觀的方式向程序員、工程師和研究生介紹了先進概念和尖端建模技術。它旨在為在微波/毫米波和光學工程中應用的高效時域求解器提供堅實的參考。