2008 International Conference on Recent Advances in Microwave Theory and Applications 2008
DOI: 10.1109/amta.2008.4763102
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Design and simulation of Microstrip M-patch antenna with double layer

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Cited by 17 publications
(11 citation statements)
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“…The feedlines have a width (Sw) which was optimized with respect to the widths of the patches above them for proper coupling to ensure efficient power transfer throughout the linear configuration. In CST Microwave Studios, an element antenna was first modeled and Equation applied to determine the required patch length (Pl) at the desired frequency, L=c2frɛre2ΔL …”
Section: Antenna Configuration and Designmentioning
confidence: 99%
“…The feedlines have a width (Sw) which was optimized with respect to the widths of the patches above them for proper coupling to ensure efficient power transfer throughout the linear configuration. In CST Microwave Studios, an element antenna was first modeled and Equation applied to determine the required patch length (Pl) at the desired frequency, L=c2frɛre2ΔL …”
Section: Antenna Configuration and Designmentioning
confidence: 99%
“…However, the ohmic and dielectric losses are significant particularly in the dominant microstrip mode. Henceforth, equations to determine the dielectric and ohmic losses in dB/cm are reported in [23][24][25], where q is the dielectric filling factor already defined by Wheeler [26] as the ratio of stored electric field energy to the total feed energy in a microstrip, but the closed-form equation was stated by Schnieder [27], α d is the dielectric attenuation factor, α o is the ohmic attenuation factor, tan δ is the loss tangent and p is the magnetic power factor. The power radiated into surface waves has a different dependence on h/λ for small values, as compared to free space radiation.…”
Section: The Corporate Feedmentioning
confidence: 99%
“…And it can easily change many antenna performances through changing the shape of the patch. By now the form of a patch microstrip antenna have many dozens [5]. So its prospects are very bright, and now it has been widely used in mobile communications, satellite communications, radar, and other various fields.…”
Section: Introductionmentioning
confidence: 98%