DocumentCode :
1376402
Title :
Advanced design of phased-array beam-forming networks
Author :
Speciale, R.A.
Author_Institution :
639 Camino de Encanto, Redondo Beach, CA, USA
Volume :
38
Issue :
4
fYear :
1996
fDate :
8/1/1996 12:00:00 AM
Firstpage :
22
Lastpage :
34
Abstract :
Recent, very general and fundamental results in the theory of electrically large microwave networks lead to new, advanced designs of high-efficiency beam-forming networks, for high-directivity electronically-steered phased arrays. On the basis of the rigorous new results, the beam-forming networks of electronically-steered phased arrays can be simultaneously impedance matched to any given set of radiating elements on one side, and to any given set of mutually-coherent, phase- and amplitude-controlled microwave sources on the other. Further, the impedance match attained in transmission also holds in reception, as long as the set of mutually-coherent receivers used has the same internal impedances as the set of sources used. The impedance match attained accounts simultaneously for both the electromagnetic proximity coupling between all the radiating array elements, and for any given internal cross-coupling of the set of sources, in transmission, or of the set of receivers, in reception. The resulting impedance match is totally independent from the amplitude and phase settings of the sources, in transmission, and from the direction of the incoming beam, in reception, completely suppressing the notorious array-blindness effect for all beam directions. Further, beam-forming networks can also be designed with prescribed transmission responses-besides a prescribed impedance match-in both the transmission and reception modes, and with a number of beam-steering control components that is much smaller than the number of array elements
Keywords :
antenna phased arrays; impedance matching; microwave antenna arrays; advanced design; amplitude-controlled microwave sources; array-blindness effect; beam-steering control components; electrically large microwave networks; electromagnetic proximity coupling; high-directivity electronically-steered phased arrays; high-efficiency beam-forming networks; impedance matching; internal cross-coupling; internal impedances; mutually-coherent receivers; phase-controlled microwave sources; phased-array beam-forming networks; radiating array elements; radiating elements; reception; transmission; transmission responses; Design methodology; Electromagnetic coupling; Electromagnetic radiation; Electronic mail; Impedance; Logic arrays; Microwave antenna arrays; Microwave theory and techniques; Phased arrays; Scattering;
fLanguage :
English
Journal_Title :
Antennas and Propagation Magazine, IEEE
Publisher :
ieee
ISSN :
1045-9243
Type :
jour
DOI :
10.1109/74.537363
Filename :
537363
Link To Document :
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