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The cover of “Analysis and design of substrate integrated waveguide using efficient 2D hybrid method” - Open Library.

"Analysis and design of substrate integrated waveguide using efficient 2D hybrid method" was published by Morgan & Claypool in 2010 - San Rafael, Calif. (1537 Fourth Street, San Rafael, CA 94901 USA), it has 82 pages and the language of the book is English.


“Analysis and design of substrate integrated waveguide using efficient 2D hybrid method” Metadata:

  • Title: ➤  Analysis and design of substrate integrated waveguide using efficient 2D hybrid method
  • Author:
  • Language: English
  • Number of Pages: 82
  • Publisher: Morgan & Claypool
  • Publish Date:
  • Publish Location: ➤  San Rafael, Calif. (1537 Fourth Street, San Rafael, CA 94901 USA)

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"Analysis and design of substrate integrated waveguide using efficient 2D hybrid method" Table Of Contents:

  • 1- 1. Introduction
  • 2- 2. SIW Circuits Composed of Metallic Posts
  • 3- A typical SIW circuit and its equivalent problem
  • 4- Field expressions
  • 5- Boundary conditions
  • 6- Z matrix
  • 7- S matrix
  • 8- Sub-ports combination
  • 9- Examples
  • 10- Modeling of losses
  • 11- 3. SIW Circuits with Dielectric Posts
  • 12- A typical SIW circuit and its equivalent problem
  • 13- Field expressions in different dielectric regions
  • 14- Boundary conditions
  • 15- Z matrix, S matrix and sub-port combination
  • 16- Examples
  • 17- 4. Even-Odd Mode Analysis of a Symmetrical Circuit
  • 18- Decomposition of a symmetrical circuit
  • 19- Half circuit with PMC symmetry wall
  • 20- Half circuit with PEC symmetry wall
  • 21- Examples
  • 22- 5. Microstrip to SIW transition and Half Mode SIW
  • 23- Method
  • 24- Transition examples
  • 25- Half mode SIW
  • 26- 6. SIW Antennas
  • 27- SIW horn antennas
  • 28- SIW slot antennas
  • 29- Bibliography
  • 30- Authors' biographies.

"Analysis and design of substrate integrated waveguide using efficient 2D hybrid method" Description:

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Substrate integrated waveguide (SIW) is a new type of transmission line. It implements a waveguide on a piece of printed circuit board by emulating the side walls of the waveguide using two rows of metal posts. It inherits the merits both from the microstrip for compact size and easy integration, and from the waveguide for low radiation loss, and thus opens another door to design efficient microwave circuits and antennas at a low cost. This book presents a two-dimensional fullwave analysis method to investigate an SIW circuit composed of metal and dielectric posts. It combines the cylindrical eigenfunction expansion and the method of moments to avoid geometrical descritization of the posts. The method is presented step-by-step, with all the necessary formulations provided for a practitioner who wants to implement this method by himself. This book covers the SIW circuit printed on either homogeneous or inhomogeneous substrate, the microstrip-to-SIW transition and the speed-up technique for the simulation of symmetrical SIW circuits. Different types of SIW circuits are shown and simulated using the proposed method. In addition, several slot antennas and horn antennas fabricated using the SIW technology are also given.

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