DocumentCode
1501966
Title
Resonant frequencies of rectangular microstrip antennas with flush and spaced dielectric superstrates
Author
Bernhard, Jennifer T. ; Tousignant, Carolyn J.
Author_Institution
Electr. & Comput. Eng. Dept., New Hampshire Univ., Durham, NH, USA
Volume
47
Issue
2
fYear
1999
fDate
2/1/1999 12:00:00 AM
Firstpage
302
Lastpage
308
Abstract
This paper presents a predictive model for the resonant frequencies of rectangular microstrip antennas with flush and spaced superstrates. This closed-form model is suitable for CAD and is directly applicable for the integration of microstrip antennas beneath plastic covers or protective dielectric superstrates in portable wireless equipment. The model utilizes conformal mapping and the concept of equivalent capacitance to determine the effective permittivity of a covered microstrip structure. A comparison between calculated and measured resonant frequencies demonstrates that the model provides less than 1% errors for structures with low relative permittivities (ε r<3) and slightly higher errors for structures that contain higher permittivity materials. Generally, the model predicts the resonant frequency of a spaced superstrate structure as accurately as possible within the tolerance range of the structure´s electrical and physical parameters
Keywords
capacitance; microstrip antennas; mobile antennas; permittivity; resonance; CAD; closed-form model; conformal mapping; effective permittivity; electrical parameters; equivalent capacitance; flush dielectric superstrates; physical parameters; plastic covers; portable wireless equipment; predictive model; protective dielectric superstrates; rectangular microstrip antennas; relative permittivity; resonant frequencies; spaced dielectric superstrates; tolerance range; Antenna measurements; Capacitance; Conformal mapping; Dielectrics; Microstrip antennas; Permittivity; Plastics; Predictive models; Protection; Resonant frequency;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/8.761070
Filename
761070
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