Master'sOpen Access

Ladar (laser radar) kullanılarak tasarım mikrostrip yama anteni

2023
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Advisor: Doç. Doğu Çağdaş Atilla

Abstract (EN)

Multiple approaches have been explored to improve the data transfer rate and signal strength of this technology. Wireless communications in the 2.33 to 12.4 GHz range stand to benefit greatly from the new and enhanced square antenna proposed in this letter. With this antenna in place, new spectrums may be made available for wideband, license-free communications (UWB). In 2002, the United States Federal Communications Commission (FCC) officially recognized the ultra-wideband (UWB) frequency range of 3.1 GHz to 10.6 GHz. The microstrip patch antenna, meanwhile, is often employed in high-frequency settings. In high-frequency settings, the microstrip patch antenna is a typical choice. The purpose of this thesis is to present a methodology for building antennas that make optimal use of the advantages of microstrip patch antennas in the context of ladar applications. The use of a THz rectangular microstrip patch antenna has been proposed. Polyimide, with a dielectric constant of 3.5, is our preferred choice for the substrate material. Therefore, the antenna's operating frequency will be between 0.648 THz to 0.68 THz. The computed resonance frequency of the proposed antenna is 0.8 THz, and its directional gain is 8.09 dBi. The antenna has a 30 GHz impedance bandwidth. At the resonance frequency of 0.625 THz, when the matching circuit is at its most effective, the modelled antenna's return loss was just -18.632 dB. The suggested antenna provides the flexibility to be used for a variety of applications, including Lidar, video rate imaging systems (0.6 THz), and homeland security (0.6–0.8 THz). CST Microwave Studio was used for both the antenna's design and its modelling.

Author

Dr. Afnan Hamad Shıhab

How to Cite

Afnan Hamad Shıhab (Master Thesis). Ladar (laser radar) kullanılarak tasarım mikrostrip yama anteni, 2023, Altınbaş University.

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