DocumentCode :
40131
Title :
Recombinant Waveguide Power Divider
Author :
Djerafi, Tarek ; Patrovsky, A. ; Ke Wu ; Tatu, Serioja Ovidiu
Author_Institution :
Energie Mater. et Telecommun., Inst. Nat. de la Rech. Sci., Montreal, QC, Canada
Volume :
61
Issue :
11
fYear :
2013
fDate :
Nov. 2013
Firstpage :
3884
Lastpage :
3891
Abstract :
In this paper, a substrate integrated waveguide power divider is proposed on the basis of a recombinant topology that provides in-phase power division with an odd or even number of branches. The aim is to generate different types of power distribution to control sidelobe level in the antenna array. In this study, several power-divider designs were designed to demonstrate and validate the design approach. Each design consists of a cascade of steps and nfurcations, which were initially designed based on sinusoidal basis functions. These designs were simulated using the High Frequency Structure Simulator (HFSS) and shown to closely match the performance estimated using the basis functions. A substrate with thickness of 0.508 mm and dielectric constant of 2.94 is used. A three-way power divider with a binominal output taper is optimized and fabricated, showing good results in the bandwidth of interest from 72 to 81 GHz. Measurement results for a 3 × 8 slot array antenna designed in conjunction with the proposed feeding network are presented and discussed. This design can be used to build up rectangular waveguide structures. The novel structure is expected to be useful in building sub-arrays of antenna in the development of millimeter-wave automotive radar systems.
Keywords :
millimetre wave radar; permittivity; power dividers; road vehicle radar; slot antenna arrays; substrate integrated waveguides; HFSS; binominal output taper; dielectric constant; feeding network; high frequency structure simulator; millimeter-wave automotive radar systems; power distribution; recombinant topology; recombinant waveguide power divider; rectangular waveguide structures; sidelobe level; sinusoidal basis functions; size 0.508 mm; slot array antenna; substrate integrated waveguide power divider; three-way power divider; Antenna arrays; Arrays; Bandwidth; Junctions; Power dividers; Radar antennas; Topology; Millimeter-wave techniques; power divider; slot array antenna; substrate integrated waveguide (SIW);
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2013.2283195
Filename :
6621053
Link To Document :
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