FDTD Modeling of EM Field inside Microwave Cavities

Nonfiction, Science & Nature, Technology, Microwaves, Telecommunications
Cover of the book FDTD Modeling of EM Field inside Microwave Cavities by Shiv Narayan, K. M. Divya, V. Krushna Kanth, Springer Singapore
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Author: Shiv Narayan, K. M. Divya, V. Krushna Kanth ISBN: 9789811034152
Publisher: Springer Singapore Publication: December 21, 2016
Imprint: Springer Language: English
Author: Shiv Narayan, K. M. Divya, V. Krushna Kanth
ISBN: 9789811034152
Publisher: Springer Singapore
Publication: December 21, 2016
Imprint: Springer
Language: English

This book deals with the EM analysis of closed microwave cavities based on a three-dimensional FDTD method. The EM analysis is carried out for (i) rectangular microwave ovens and (ii) hybrid-cylindrical microwave autoclaves at 2.45 GHz. The field distribution is first estimated inside domestic rectangular ovens in xy-, yz-, and zx-plane. Further, the RF leakage from the oven door is determined to study the effect of leakage radiation on wireless communication at 2.45 GHz. Furthermore, the EM analysis of the autoclave is carried out based on 3D FDTD using staircase approximation. In order to show the capability of autoclaves (excited with five source) for curing the aerospace components and materials, the field distribution inside autoclave cavity is studied in presence of aerospace samples. The FDTD based modelling of oven and autoclave are explained with the appropriate expressions and illustrations.

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This book deals with the EM analysis of closed microwave cavities based on a three-dimensional FDTD method. The EM analysis is carried out for (i) rectangular microwave ovens and (ii) hybrid-cylindrical microwave autoclaves at 2.45 GHz. The field distribution is first estimated inside domestic rectangular ovens in xy-, yz-, and zx-plane. Further, the RF leakage from the oven door is determined to study the effect of leakage radiation on wireless communication at 2.45 GHz. Furthermore, the EM analysis of the autoclave is carried out based on 3D FDTD using staircase approximation. In order to show the capability of autoclaves (excited with five source) for curing the aerospace components and materials, the field distribution inside autoclave cavity is studied in presence of aerospace samples. The FDTD based modelling of oven and autoclave are explained with the appropriate expressions and illustrations.

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