Ku-band Substrate Integrated Waveguide (SIW) Slot Array Antenna for Next Generation Networks

Article ID

CSTNWS221TC

Ku-band Substrate Integrated Waveguide (SIW) Slot Array Antenna for Next Generation Networks

Sourav Moitra
Sourav Moitra
Asish Kumar Mukhopadhyay
Asish Kumar Mukhopadhyay
Anup Kumar Bhattacharjee
Anup Kumar Bhattacharjee
DOI

Abstract

The design of an antenna based on Substrate Integrated Waveguide (SIW) has been realized in this paper. The structure consists of an array of slot antenna designed to operate in Kuband applications. The effect of introducing arrays of slots has been extensively studied unlike any other recent publications in this field. The basic structure has been designed over a dielectric substrate with dielectric constant of 3.2 and with a thickness of 0.782mm. The design consists of a SIW antenna fed with a microstrip to SIW transition. Multiple slot array effects have been studied and analyzed using CST Microwave Studio full wave EM Simulator which supports Finite Element Method (FEM) of computational Electromagnetics. The design has been supported with its return loss and radiation pattern characteristics to validate Ku-band operation. The effect of increasing the number of slot arrays has also been analyzed to support integration to System-on- Substrate (SoS) which promises more compact layouts.

Ku-band Substrate Integrated Waveguide (SIW) Slot Array Antenna for Next Generation Networks

The design of an antenna based on Substrate Integrated Waveguide (SIW) has been realized in this paper. The structure consists of an array of slot antenna designed to operate in Kuband applications. The effect of introducing arrays of slots has been extensively studied unlike any other recent publications in this field. The basic structure has been designed over a dielectric substrate with dielectric constant of 3.2 and with a thickness of 0.782mm. The design consists of a SIW antenna fed with a microstrip to SIW transition. Multiple slot array effects have been studied and analyzed using CST Microwave Studio full wave EM Simulator which supports Finite Element Method (FEM) of computational Electromagnetics. The design has been supported with its return loss and radiation pattern characteristics to validate Ku-band operation. The effect of increasing the number of slot arrays has also been analyzed to support integration to System-on- Substrate (SoS) which promises more compact layouts.

Sourav Moitra
Sourav Moitra
Asish Kumar Mukhopadhyay
Asish Kumar Mukhopadhyay
Anup Kumar Bhattacharjee
Anup Kumar Bhattacharjee

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S. Moitra. 2013. “. Global Journal of Computer Science and Technology – E: Network, Web & Security GJCST-E Volume 13 (GJCST Volume 13 Issue E5): .

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Crossref Journal DOI 10.17406/gjcst

Print ISSN 0975-4350

e-ISSN 0975-4172

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GJCST Volume 13 Issue E5
Pg. 11- 15
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Ku-band Substrate Integrated Waveguide (SIW) Slot Array Antenna for Next Generation Networks

Sourav Moitra
Sourav Moitra
Asish Kumar Mukhopadhyay
Asish Kumar Mukhopadhyay
Anup Kumar Bhattacharjee
Anup Kumar Bhattacharjee

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