DocumentCode
2706497
Title
Design of COTS Dual-Circularly Polarized conical-scan Cassegrain Antenna for rocket tracking
Author
Saratayon, Peerayudh ; Sripho, Pattapong ; Suparchaiparnitchapong, Soraphob
Author_Institution
Defence Technol. Inst., Nonthaburi, Thailand
fYear
2015
fDate
23-25 April 2015
Firstpage
132
Lastpage
137
Abstract
The purpose of this project is to design a Dual-Circularly-Polarized Cassegrain Antenna used for tracking of DTI´s experimental rocket. Conical-scan tracking scheme is used for simplicity of the design and development instead of electronic scanning. Dual polarizations, LHCP and RHCP, have been used to tackle the change of polarization during the approach of the rocket to the ground station and the departure away from it. As a low-cost prototype, main structure of the antenna consists mainly of a COTS parabolic dish, a CNC-machined hyperbolic subreflector and an FR-4 based dual-circularly polarized Microstrip patch feeder. Various dimensions are optimized to reduce blocking ratio to best suit small parabolic dish as well as to achieve optimal beam shape. One RF channel has been dedicated for tracking purposes in order to maximize the scanning rate while the other is solely used for data reception. Tracking rate and accuracy are designed to match with speed of the rocket acquired from the study of Concept of the Operation (CONOP).
Keywords
antenna feeds; conical antennas; electromagnetic wave polarisation; microstrip antennas; object tracking; reflector antennas; rockets; CNC-machined hyperbolic subreflector; CONOP; COTS dual-circularly polarized conical-scan Cassegrain antenna; COTS parabolic dish; FR-4 based dual-circularly polarized microstrip patch feeder; RF channel; concept of the operation; dual polarizations; electronic scanning; optimal beam shape; rocket tracking; Feeds; Mathematical model; Microstrip; Microstrip antennas; Rockets; Three-dimensional displays; CONOP; Cassegrain Antenna; Conical Scan; Dual Circular Polarization; Hyperbolic Subreflector; Microstrip Feeder; PAN Device; Parabolic Dish Antenna; Rocket Tracking; Tilting Mechanism;
fLanguage
English
Publisher
ieee
Conference_Titel
Defence Technology (ACDT), 2015 Asian Conference on
Conference_Location
Hua Hin
Print_ISBN
978-1-4799-8166-3
Type
conf
DOI
10.1109/ACDT.2015.7111598
Filename
7111598
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