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Electromagnetic Simulation Techniques Based on the FDTD Method
The book is divided into 6 chapters. In the 1st two chapters introduce the basic concepts of the three dimensional Cartesian FDTD method, such as the update equations and boundary conditions, and follow this with a discussion of advanced FDTD method, such as conformal techniques, dispersive media, circuit elements, and near to far field transformation. In the 3rd chapter present the basic concepts of parallel processing techniques and systems, including parallel FDTD techniques and systems. In the 4th chapter introduce simulation techniques based on FDTD methods. 5th chapter describe the practical simulation technique through some illustrative engineering applications. Finally, in 6th chapter, introduce some advanced simulation techniques.
This is the first publication that guides readers step by step through the implementation of electromagnetic simulation techniques based on FDTD methods. These simulation techniques serve as an essential bridge between FDTD methods and their applications. Moreover, the book helps readers better understand the underlying logic of FDTD methods so that they can design FDTD projects using either commercial electromagnetic software packages or their own codes in order to solve practical engineering problems.
The book begins with two chapters that introduce the basic concepts of the 3D Cartesian FDTD method, followed by discussions of advanced FDTD methods such as conformal techniques, dispersive media, circuit elements, and near-to-far field transformation. Next, the book:
. Presents basic concepts of parallel processing techniques and systems, including parallel FDTD techniques and systems.
. Explores simulation techniques based on FDTD methods
. Illustrates practical simulation techniques using engineering applications
. Introduces advanced simulation techniques.
Each chapter concludes with references to help readers investigate particular topics in greater depth. Each chapter also includes problem sets that challenge readers to put their new FDTD and simulation skills into practice.
By bridging the gap between FDTD theory and practical simulation techniques, this publication is an invaluable guide for students and engineers who need to solve a wide range of design problems in RF, antenna, and microwave engineering.
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