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Item type:Item, Theoretical investigation of a parabolic reflector illuminated by a probe-fed rectangular waveguide with coupling apertures(2020-01-01) ;Lamultree, Suthasinee ;Panthasa, RutPhongcharoenpanich, ChuwongIn this study, a design of high gain reflector antenna for point to point communications is reported. A probe-fed waveguide aperture with four-stacked-coupling aperture is employed to be a primary illuminated parabolic reflector antenna. By varying distance between the primary and secondary antennas, its gain can be raised. An EM simulator has been used in the process. It is found that this proposed antenna provides an excellent symmetrical sharp beam with a low side lobe level as well as low cross-polarization. In addition, this proposed antenna produces a high gain of 26.9 dBi with S<inf>11</inf> < -15 dB from 0.88f<inf>c</inf> to 1.06f<inf>c</inf>. All simulation results are reported and discussed in the paper. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Design and measurement of a probe-fed open-ended rectangular waveguide with four-stacked-coupling-aperture(2019-01-01) ;Lamultree, Suthasinee ;Panthasa, RutPhongcharoenpanich, ChuwongThis paper presents a design and measurement of symmetric bidirectional pattern antenna implemented by using a probe-fed open-ended rectangular waveguide (OERW) vertically attached with four-stacked-coupling-aperture (FSCA). For the OERW without FSCA, it provides asymmetric beam in forwards and backwards directions. With the effect of FSCA, that asymmetry is amended to be symmetry, and propagates the WLAN frequency band of 2.4–2.5 GHz with the return loss better than 10 dB, and maximum gain of 7.04 dBi. A prototype antenna was fabricated and measured. Obviously, the preliminary measured results are very reassuring, and reasonably in good agreement with simulation results.
