Title :
Planar
-Band 4
4 Nolen Matrix in SIW Technology
Author :
Djerafi, Tarek ; Fonseca, Nelson J G ; Wu, Ke
Author_Institution :
Dept. of Electr. Eng., Ecole Polytech. de Montreal, Montreal, QC, Canada
Abstract :
In this paper, a 4 ?? 4 Nolen matrix beam-forming network for multibeam antenna applications is designed and demonstrated at 12.5-GHz center frequency. The structure is implemented using substrate integrated waveguide (SIW) technology for its attractive advantages including compact size, low loss, light weight, and planar form well suitable for high-density integration with other microwave and millimeter-wave planar integrated circuits. SIW cruciform couplers are used as fundamental building blocks for their wide range of coupling factors and their specific topology well adapted to the serial feeding topology of a Nolen matrix. The network performances are investigated over a 500-MHz frequency bandwidth ranging from 12.25 to 12.75 GHz. The matrix definition based on SIW cruciform couplers is similar to its microstrip counterpart in terms of coupling factors and phase delays. The whole network is fabricated. Measured results are in good agreement with the theoretical predictions, thus validating the proposed design concept. Using this matrix with a four radiating elements array antenna enables us to investigate the impact of the proposed matrix on the beam pointing angles versus frequency.
Keywords :
antenna arrays; array signal processing; microwave integrated circuits; millimetre wave integrated circuits; multibeam antennas; space division multiple access; substrate integrated waveguides; Nolen matrix; SIW technology; antenna array; beam pointing angles; beam-forming network; coupling factors; cruciform couplers; microwave planar integrated circuits; millimeter-wave planar integrated circuits; multibeam antenna; phase delays; planar Ku-band; serial feeding topology; space division multiple access; substrate integrated waveguide; Beam-forming network; Blass matrix; Butler matrix; Nolen matrix; beam scanning; smart antenna system; space division multiple access (SDMA); substrate integrated waveguide (SIW);
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2009.2037866