DocumentCode :
579439
Title :
Inductance and capacitance reformulation of square patch-based artificial magnetic conductor
Author :
Suraperwata, Aulia Virnanda ; Olivia, Levy ; Munir, Achmad
Author_Institution :
Radio Telecommun. & Microwave Lab., Inst. Teknol. Bandung, Bandung, Indonesia
fYear :
2012
fDate :
30-31 Oct. 2012
Firstpage :
187
Lastpage :
191
Abstract :
The formulation of inductance (L) and capacitance (C) derived from conformal mapping theory, in some cases, needs some corrections to be accomplished with the application as the used of different circumstances. In this paper, the value of L and C for artificial magnetic conductor (AMC) structured from square patches is investigated numerically to be reformulated based on analytical study. The analysis is conducted using the simulation results of AMC structure which are processed through the regression analysis. The AMC structure used for analysis is built from a two-dimensionally arrayed square patches deployed on FR4 Epoxy dielectric substrate. The frequency range of analysis which is intended are from 1GHz to 5GHz is corresponding with the working frequency of unit cell square patch. Hence, the analyzed parameters of unit cell include substrate width, substrate thickness, substrate properties, patch width, and gap width between patches. From the analysis result, it is shown that the properties of dielectric substrate, i.e. relative permittivity and relative permeability, have no influence to the LC formulation. In conclusion, the overall correction factors for LC reformulation gives the maximum frequency deviation of 9.59% which is divided into 2 frequency ranges, 1GHz to 2.5GHz and 2.5GHz to 5GHz.
Keywords :
conformal mapping; electromagnetic metamaterials; numerical analysis; permeability; permittivity; regression analysis; AMC structure; FR4 epoxy dielectric substrate; LC reformulation; analytical study; capacitance reformulation; conformal mapping theory; electromagnetic materials; frequency 1 GHz to 5 GHz; gap width; inductance reformulation; patch width; regression analysis; relative permeability; relative permittivity; square patch-based artificial magnetic conductor; substrate properties; substrate thickness; substrate width; two-dimensional arrayed square patches; unit cell square patch; working frequency; Capacitance; Conductors; Dielectric substrates; Inductance; Permittivity; Simulation; Substrates; Artificial magnetic conductor; correction factor; inductor and capacitor formulation; square patch;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Telecommunication Systems, Services, and Applications (TSSA), 2012 7th International Conference on
Conference_Location :
Bali
Print_ISBN :
978-1-4673-4549-1
Type :
conf
DOI :
10.1109/TSSA.2012.6366048
Filename :
6366048
Link To Document :
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