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- W2259112422 abstract "Design of Stripline-Fed Dual-Polarization Aperture-Coupled Stacked Microstrip Patch Phased Array Antenna for Wideband Application. (August 2010) David Geehyun Kim, B.S., Texas A&M University Chair of Advisory Committee: Dr. Kai Chang Recent days, antennas play an important role in wireless communication system. Microstrip patch antennas are well known to have positive features for cost-effective, low profile and broadband. This type of antenna can be used in wide range of applications such as in wireless communications, radar systems, and satellites. Inhibiting characteristics of single patch antenna with low gain and narrow band leads to the research area to have array configuration. Beam steering antennas are the ideal solution for various systems such as traffic control and collision avoidance radar systems. The goal of this work is to design and implement a dual-linear polarization stacked microstrip patch phased array antenna. Single stacked microstrip patch antenna fed by microstrip line was designed to have approximately 3 GHz bandwidth in X-band with another ground plane to form a stripline-fed. Stripline-fed design protects feed lines from any outside effects. The array configuration was adapted to design in order to accomplish beam scan angle of ±30o by ±15o. Binomial power distribution of 3x2 array structure was used in order to reduce grating lobes, and changing length of feed lines was implemented for phase shifting. Bowtie cross shape aperture and dual-offset microstrip feedline was used to feed radiating patches. For the feed network, T-" @default.
- W2259112422 created "2016-06-24" @default.
- W2259112422 creator A5045411980 @default.
- W2259112422 date "2010-10-12" @default.
- W2259112422 modified "2023-09-27" @default.
- W2259112422 title "Design of Stripline-Fed Dual Polarization Aperture-Coupled Stacked Microstrip Patch Phased Array Antenna for Wideband Application" @default.
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