DocumentCode
1672983
Title
Design & development of a 32 elements X-band Phased Array antenna for airborne & Space borne SAR payloads
Author
Ali, A. K M Shafaat ; Raza, Maisam ; Shah, Mussadiq Ali
Author_Institution
SUPARCO Plant, Karachi, Pakistan
fYear
2012
Firstpage
343
Lastpage
347
Abstract
Air Borne & Space Borne SAR Payloads are used now a days in variety of missions for different applications. Onboard SAR payload consists of a digital signal processing & data storage unit, a transceiver and an antenna unit. Onboard antenna is a vital unit of a communication system and design of antenna becomes much more critical and complex once electronic beam steering is an essential requirement. Usually for SAR applications, electronically steerable high gain antennas are required to support different operating modes. In this paper, design of 32 elements X-band Phased Array is discussed along with its simulation and measurement results. Design antenna is based on microstrip technology and orientation of feeding mechanism to a certain group of elements is such that it provides circular polarization both across range/azimuth. Electronically steering is possible by changing the phase at the inputs of the antenna ports and different possible steering scenarios are discussed in this paper. An advanced EM simulation software is being used for design and simulation purpose. Simulated results provide a gain of approximately 20 dB with a VSWR <; 2 at desired frequency range in the band. Axial ratio of <; 3 is targeted and achieved in the desired frequency range.
Keywords
airborne radar; antenna feeds; antenna phased arrays; array signal processing; beam steering; dielectric polarisation; microstrip antennas; radar signal processing; spaceborne radar; storage management; synthetic aperture radar; transceivers; X-band phased array antenna; advanced EM simulation software; airborne SAR payloads; antenna design; antenna ports; antenna unit; circular polarization; communication system; data storage unit; digital signal processing; electronic beam steering; electronically steerable high gain antennas; feeding mechanism; microstrip technology; onboard SAR payload; space borne SAR payloads; transceiver; Antenna measurements; Feeds; Frequency measurement; Gain measurement; Microstrip; Microstrip antennas; Radar antennas;
fLanguage
English
Publisher
ieee
Conference_Titel
Applied Sciences and Technology (IBCAST), 2012 9th International Bhurban Conference on
Conference_Location
Islamabad
Print_ISBN
978-1-4577-1928-8
Type
conf
DOI
10.1109/IBCAST.2012.6177576
Filename
6177576
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