The prototype of a wideband Ku-band conical corrugated horn antenna with 3-D printing technology
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Date
2019
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Advanced Electromagnetics
Open Access Color
Green Open Access
Yes
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OpenAIRE Views
Publicly Funded
No
Abstract
This study is about the design and production of a conical corrugated horn antenna used to feed reflector antennas in satellite communication (direct broadcast satellite-DBS) systems. The antenna designed with CST Microwave Studio program operates within wideband of 10.5-18.5 GHz at Ku-band. The prototype is realized with new generation 3D printing technology and conductive paint coating method which makes the antenna lightweight and provides low cost and faster production. According to measurement results the antenna has return loss almost better than 20 dB gain value of minimum 14.5 dBi and sidelobe level of-18 dB at most within 1.76:1 frequency bandwidth. Antenna is observed to have a gain loss of at most 1.5-2 dB within the band as compared to the same antenna with high conductivity metal which needs higher cost and production time for the manufacturing. © 2021 Elsevier B.V. All rights reserved.
Description
ORCID
Keywords
3d Printers, Horn Antennas, Satellite Antennas, Satellite Communication Systems, Conductive Paints, Corrugated Horn Antennas, Cst Microwave Studio, Direct Broadcast Satellites, Frequency Band Width, High-conductivity Metals, Reflector Antennas, Satellite Communications, Microwave Antennas, 3D printers, Horn antennas, Satellite antennas, Satellite communication systems, Conductive paints, Corrugated horn antennas, CST microwave studio, Direct broadcast satellites, Frequency band width, High-conductivity metals, Reflector antennas, Satellite communications, Microwave antennas, Electricity and magnetism, 3-D printing, QC501-766, direct-broadcast satellite (DBS) communication, Physics, QC1-999, spray coating, corrugated horn antenna
Fields of Science
0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology
Citation
WoS Q
Scopus Q

OpenCitations Citation Count
19
Source
Advanced Electromagnetics
Volume
8
Issue
2
Start Page
39
End Page
47
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Scopus : 28
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