Applications of planar multiple-slot antennas for impedance control, and analysis using FDTD with Berenger's PML method

Folded- and multiple-slot antennas have been used for quasi-optical arrays. However, there is lack of information of these antennas, especially on finite substrates. CPW-fed folded- and multiple-slot antennas are analyzed using the FDTD technique with improved absorbing boundary condition (perfectly...

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description Folded- and multiple-slot antennas have been used for quasi-optical arrays. However, there is lack of information of these antennas, especially on finite substrates. CPW-fed folded- and multiple-slot antennas are analyzed using the FDTD technique with improved absorbing boundary condition (perfectly matched layer (PML) method). The effects on the effective dielectric constant and input impedance due to the substrate thickness have been investigated. A method of controlling the resonant impedance is also presented.
doi_str_mv 10.1109/APS.1995.530037
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subjects Bit error rate
Boundary conditions
Circuit synthesis
Dielectric substrates
Electromagnetic reflection
Finite difference methods
Impedance
Resonance
Resonant frequency
Time domain analysis
title Applications of planar multiple-slot antennas for impedance control, and analysis using FDTD with Berenger's PML method
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