Performance Evaluation of a Millimeter-Wave Phased Array Antenna Using Circularly Polarized Elements
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32794
Performance Evaluation of a Millimeter-Wave Phased Array Antenna Using Circularly Polarized Elements

Authors: Rawad Asfour, Salam Khamas, Edward A. Ball

Abstract:

This paper is focused on the design of an mm-wave phased array. To date, linear polarization is adapted in the reported designs of phased arrays. However, linear polarization faces several well-known challenges. As such, an advanced design for phased array antennas is required that offers circularly polarized (CP) radiation. A feasible solution for achieving CP phased array antennas is proposed using open-circular loop antennas. To this end, a 3-element circular loop phased array antenna is designed to operate at 28 GHz. In addition, the array ability to control the direction of the main lobe is investigated. The results show that the highest achievable field of view (FOV) is 100°, i.e. 50° to the left and 50° to the right-hand side directions. The results are achieved with a CP bandwidth of 15%. Furthermore, the results demonstrate that a high broadside gain of circa 11 dBi can be achieved for the steered beam. Besides, radiation efficiency of 97% can also be achieved based on the proposed design.

Keywords: loop antenna, phased array, beam steering, wide bandwidth, circular polarization, CST

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 488

References:


[1] Niu, Y., Li, Y., Jin, D., Su, L. and Vasilakos, A., 2015. “A survey of millimeter wave communications (mmWave) for 5G: opportunities and challenges. ˮ Wireless Networks, 21(8), pp.2657-2676.
[2] Naqvi, A. and Lim, S., 2018. “Review of Recent Phased Arrays for Millimeter-Wave Wireless Communication. Sensors, ˮ 18(10), p.3194.
[3] Wanner, S. “Phased Array System Design ˮ. (Ames, Iowa): (Iowa State University), pp.7-76, 2008
[4] P. Ngamjanyaporn, C. Phongcharoenpanich, P. Akkaraekthalin and M. Krairiksh, "Signal-to-interference ratio improvement by using a phased array antenna of switched-beam elements," in IEEE Transactions on Antennas and Propagation, vol. 53, no. 5, pp. 1819-1828, May 2005, doi: 10.1109/TAP.2005.846759.
[5] A. N. Uwaechia and N. M. Mahyuddin, "A Comprehensive Survey on Millimeter Wave Communications for Fifth-Generation Wireless Networks: Feasibility and Challenges," in IEEE Access, vol. 8, pp. 62367-62414, 2020, doi: 10.1109/ACCESS.2020.2984204.
[6] Gao, S., Luo, Q. and Zhu, F., 2014. “Circularly Polarized Antennas. ˮ 1st ed. Chennai, India, pp.1-28.
[7] Rong-Lin Li, Fusco, V. and Nakano, H., 2003. “Circularly polarized open-loop antennaˮ. IEEE Transactions on Antennas and Propagation, 51(9), pp.2475-2477.
[8] Zhang, L., Gao, S., Luo, Q., Young, P. and Li, Q., 2017. “Wideband Loop Antenna with Electronically Switchable Circular Polarization. ˮ IEEE Antennas and Wireless Propagation Letters, 16, pp.242-2
[9] N. P. Lawrence, B. W. -. Ng, H. J. Hansen and D. Abbott, "5G Terrestrial Networks: Mobility and Coverage—Solution in Three Dimensions," in IEEE Access, vol. 5, pp. 8064-8093, 2017, doi: 10.1109/ACCESS.2017.2693375.
[10] R. L. Li, J. Laskar and M. M. Tentzeris, “Wideband probe-fed circularly polarised circular loop antenna ˮ. IEEE in Electronics Letters, vol. 41, no. 18, pp. 997-999, 1 Sept. 2005, doi: 10.1049/el:20052315.
[11] RongLin Li, G. DeJean, J. Laskar and M. M. Tentzeris, "Investigation of circularly polarized loop antennas with a parasitic element for bandwidth enhancement," in IEEE Transactions on Antennas and Propagation, vol. 53, no. 12, pp. 3930-3939, Dec. 2005, doi: 10.1109/TAP.2005.859917.
[12] Rong-Lin Li, Fusco, V. and Nakano, H., 2003. “Circularly polarized open-loop antennaˮ. IEEE Transactions on Antennas and Propagation, 51(9), pp.2475-2477.
[13] X. Yang, B. Shao, F. Yang, A. Z. Elsherbeni and B. Gong, "A Polarization Reconfigurable Patch Antenna With Loop Slots on the Ground Plane," in IEEE Antennas and Wireless Propagation Letters, vol. 11, pp. 69-72, 2012, doi: 10.1109/LAWP.2011.2182595.
[14] Balanis, C., 2005. “Antenna Theory (Analysis and Design). ˮ 3rd ed. Hoboken, New Jersey, pp.231- 371.