A Broadband Reflectarray Antenna using the Triangular Array Configuration
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A Broadband Reflectarray Antenna using the Triangular Array Configuration摘要
A novel broadband reflectarray cell element is designed for use in several offset-fed reflectarray antennas based on square and triangular lattice. The proposed double-layer element consists of two stacked rectangular patches having two slots in non-radiating edges. Reflection phase curves are obtained by changing simultaneously the slot’s length of top and bottom patch. The designed element exhibits a large phase-shift range in excess of 360o.This wideband cell element is designed to be used in a triangular lattice that eliminates the grating lobes for wideband reflectarrays composed of unit-cell larger than half-wavelength. Two 529-element square reflectarrays and two 518-element triangular reflectarray antennas were designed and simulated using CST and HFSS, for producing 20o and 35o off-broadside E-plane beams using a 20o offset feed. The 1-dB gain-bandwidth is about 30% at the center frequency of 14 GHz, and the maximum simulated gain is about 31 dBi which is equivalent to 51.5% aperture efficiency for a 20o off-broadside reflectarray based on triangular lattice configurations.
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参考
D. M. Pozar, S. D. Targonski, and H. D.
Syrigos, “Design of Millimeter-Wave
Microstrip Reflectarray,” IEEE Transactions
on Antennas and Propagation, vol. 45, no.
, pp. 286–295, Feb. 1997.
J. Huang and J. A. Encinar, Reflectarray
Antennas, New York: IEEE Press, 2008.
M. Riel and J.-Jacques Laurin, “Design of
an Electronically Beam Scanning
Reflectarray Using Aperture-Coupled
Elements,” IEEE Transactions on Antennas
and Propagation, vol. 55, no. 5, pp. 1260-
, May 2007.
B. Devireddy, A. Yu, F. Yang, and A. Z.
Elsherbeni, “Gain and Bandwidth
Limitations
of Reflectarrays,” Applied Computational
Electromagnetic Society (ACES) Journal,
vol. 26, no. 2, pp. 170–178, Feb. 2011.
D. M. Pozar, “Bandwidth of Reflectarray,”
Electron. Lett., vol. 39, no. 21, pp. 1490–
, Oct. 2003.
J. A. Encinar, “Design of Two-Layer Printed
Reflectarrays using Patches of Variable
Size,” IEEE Transactions on Antennas and
Propagation, vol. 49, no. 10, pp.1403–1410,
Oct. 2001.
D. Cadoret, A. Laisne, R. Gillard, and H.
Legay, “A New Reflectarray Cell Using
Microstrip Patches Loaded with Slots,”
Microwave and Optical Technology Letters,
vol. 44, no. 3, pp. 270–272, Feb. 2005.
M. Bozzi, S. Germani, and L. Perregrini, ”A
Figure of Merit for Losses in Printed
Reflectarray Elements,” IEEE Antennas and
Wireless Propagation Letters, vol. 3, pp.
-260, 2004.
E. Carrasco, M. Arrebola, J. A. Encinar, and
M. Barba, ” Demonstration of a Shaped
Beam Reflectarray Using Aperture-Coupled
Delay Lines for LMDS Central Station
Antenna,” IEEE Transactions on Antennas
and Propagation, vol. 56, no. 10, pp. 3103-
, Oct. 2008.
J. Encinar and J. A. Zornoza, “Broadband
Design of a Three-Layer Printed
Reflectarray,” IEEE Transactions on
Antennas and Propagation, vol. 51, no. 7,
pp. 1662–1664, Jul. 2003.
J. Huang, and R. J. Pogorzelski, “A Ka-band
Microstrip Reflectarray with Elements
Having Variable Rotation Angles,” IEEE
Transactions on Antennas and Propagation,
vol. 46, no. 5, pp. 650–656, May 1998.
M. Ab-Elhady, S. H. Zainud-Deen, A. A.
Mitkees, and A. A. Kishk, “X-Band Linear
Polarized Aperture-Coupled DRA
Reflectarray,” Microwave and Millimeter
Wave Technology (ICMMT), 2010
International Conference, pp. 1042 – 1044,
May 2010.
P. Nayeri, F. Yang, and A. Z. Elsherbeni, “A
Broadband Microstrip Reflectarray using
Sub-Wavelength Patch Elements,” IEEE
APS/URSI, pp. 1-4, 2009.
P. Nayeri, F. Yang, and A. Z. Elsherbeni,
“Broadband Reflectarray Antennas using
Double-Layer Subwavelength Patch
Elements,” IEEE Antennas and Wireless
Propagation Letters, vol. 9, pp. 1139-1142,
M. R. Chaharmir, J. Shaker, N. Gagnon, and
D. Lee, “Design of Broadband, Single Layer
Dual-Band Large Reflectarray Using Multi
Open Loop Elements,” IEEE Transactions
on Antennas and Propagation, vol. 58, no. 9,
Sept. 2010.
M. R. Chaharmir, J. Shaker, and H. Legay,
“Broadband Design of a Single Layer Large
Reflectarray Using Multi Cross Loop
Elements,” IEEE Transactions on Antennas
and Propagation, vol. 57, no. 10, pp. 3363–
, Oct. 2009.
H. Rajagopalan, Y. Rahmat-Samii, and W.
A. Imbriale, “RF MEMS Actuated
Reconfigurable Reflectarray Patch-Slot
Element,” IEEE Transactions on Antennas
and Propagation, vol. 56, no. 12, pp. 3689–
, Dec. 2008.
CST Computer Simulation Technology, “3D
EM Simulation Software,” Online:
Ansoft HFSS, “The 3D, electromagnetic,
finite-element simulation tools for highfrequency design,” [Online]. Available:
M. I. Skolnik, Radar Handbook. McGraw
Hill, 2nd Ed., 1990.