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Proceedings ArticleDOI

A wideband microstrip patch array for a MicroSAR

P. James, +1 more
- Vol. 2, pp 707-711
TLDR
In this paper, the authors describe the work that was done to produce an active antenna that meets the technical needs of future SARs but is relatively inexpensive to manufacture, and describe such an antenna that has been designed, constructed and tested, and is incorporated into a SAR airborne demonstrator.
Abstract
In order to realize their full potential, future spaceborne, Earth-surveillance, synthetic aperture radars (SARs) will require better antennas than their predecessors; while the steering requirements remain sensibly unaltered, greater fractional bandwidth will often be essential and dual-linear polarization will become a highly desirable feature. Antennas that can meet these anticipated future needs are usually planar phased arrays and potential designs have been reported in the open literature. While the technical efficacy of these reported designs is not in question, it is not clear that antennas based on these designs would be inexpensive to manufacture. This paper describes the work that was done to produce an active antenna that meets the technical needs of future SARs but is relatively inexpensive to manufacture. Finally, it describes such an antenna that has been designed, constructed and tested, and is to be incorporated into a SAR airborne demonstrator.

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Citations
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Journal ArticleDOI

Broadband matching of dual-linear polarisation stacked probe-fed microstrip patch antenna

TL;DR: In this article, a novel approach for impedance matching of probe-fed, stacked microstrip patch antenna elements is demonstrated, and a circuit model for the feeding probes is developed and its impact on antenna impedance is discussed.
Proceedings ArticleDOI

A design of feeding network for a dual-linear polarization, stacked, probe-fed microstrip patch antenna array

G. Jaworski, +1 more
TL;DR: In this article, the components of multilayer feed network are presented for application in broad-band dual-linear polarized stacked C-band antenna for wide band matching circuits and different types of power divider networks constituting parts of BFN.
Proceedings Article

Beam-forming network for a dual frequency dual-linear polarisation stacked microstrip antenna array in LTCC compatible technology

G. Jaworski, +1 more
TL;DR: In this paper, a beamforming network for microstrip antenna arrays with cnsec2 antenna pattern for radar applications is presented and achieved a bandwidth of >400 MHz with a VSWR = 1.5 for the overall network, together with 2.5 dB losses.