Title :
Linear phase arrays based on slitted asymmetric ridge waveguides
Author :
Frezza, F. ; Guglielmi, M. ; Lampariello, P.
Author_Institution :
Dipartimento di Ingegneria Elettronica, Rome Univ., Italy
fDate :
2/1/1995 12:00:00 AM
Abstract :
The analysis of linear phase arrays based on the slitted asymmetric ridge waveguide: a structure that is, at the same time, easy to manufacture and very flexible in terms of electrical characteristics is presented. Scanning is obtained in leaky-wave fashion (frequency scan) in elevation (longitudinal plane), and by phase shifters in azimuth (cross-plane). The analysis is based on the development of an accurate transverse equivalent network and on the derivation of a dispersion relation which gives the complex longitudinal propagation constant in terms of the structural parameters. Both cases of air-filled and dielectric-loaded ridge waveguide are studied. The effects of mutual coupling between the various line sources of the array are taken into account using the unit-cell approach. A detailed parametric analysis is carried out showing how the real and imaginary parts of the complex propagation constant, which are related to the radiation characteristics, can be controlled with a good degree of independence from each other. Moreover, no blind spots are introduced in the scanning process. While the grating lobes an avoided, due to the choice of the cross-section. This approach has been applied to two other linear phased arrays of leaky-wave line sources, based on an asymmetric NRD guide and on a printed-circuit version of an offset groove guide
Keywords :
antenna phased arrays; antenna radiation patterns; dielectric-loaded waveguides; leaky wave antennas; linear antenna arrays; nonradiative dielectric waveguides; ridge waveguides; scanning antennas; waveguide antenna arrays; air-filled ridge waveguide; asymmetric NRD guide; complex longitudinal propagation constant; complex propagation constant; dielectric-loaded ridge waveguide; dispersion relation; electrical characteristics; frequency scan; leaky-wave line sources; line sources; linear phase arrays; mutual coupling; parametric analysis; phase shifters; printed-circuit; radiation characteristics; slitted asymmetric ridge waveguides; structural parameters; transverse equivalent network; unit-cell approach;
Journal_Title :
Microwaves, Antennas and Propagation, IEE Proceedings
DOI :
10.1049/ip-map:19951541