Electronically Steerable Radiation Pattern of Coupled Periodic Antenna Used Floquet Analysis

Authors

  • Ben Latifa Nader National Engineering School of Tunis Tunis Elmanar University SysCom Laboratory Tunisia, Tunis 1002
  • Hamdi Bilel National Engineering School of Tunis Tunis, Tunisia
  • Aguili Taoufik National Engineering School of Tunis Tunis, Tunisia

Keywords:

Radiation Pattern, Floquet Analysis

Abstract

In this paper we have developed a new Floquet analysis combined to MOM-CEG method to produce 3D electronically controlled antenna arrays. This approach permits to model and optimize the antenna arrays system by the sweeping of radiation beam in several directions. A parametric study on electromagnetic performance of the antenna system based on Floquet states offer a considerable advantages in 3Dsteerable radiation beam, size and directivity. Then smart periodic antenna has been constructed by placing the main beam in the desired direction.

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References

H. Bilel, T. Aguili, and H. Baugrand, “Floquet modal analysis to modlize and study 2 D planar almost periodic structures in finite and infinite extend with coupled motifs,” PIERS B, 2015.

H. Bilel, T. Aguili, N. Ravue, and H. Baugrand, “Calculation of mutual coupling parameter and their effects in 1D almost periodic structures,” PIERS B, 2014.

N. Ben Latifa, H. Bilel, and T. Aguili, “Floque modal analysis to study radiation pattern for coupled almost periodic antenna array,” AICCSA, TUNISIA, 2017.

H. Bilel, S. Limam, and T. Aguili, “Uniform and concentric circular Antenna arrays synthesis for smart antenna systems using artificial neural network algorithm,” PEARS B, 2016.

Z. Mikkioui and H. Baudrand, “Bi-dimensional bi-periodic centred field microstrip leakly wave antenna analysis by a source modal decomposition in sperctal domain,” IET Microwaves Antennas and Propagation, 2008.

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Published

2021-07-14

How to Cite

[1]
Ben Latifa Nader, Hamdi Bilel, and Aguili Taoufik, “Electronically Steerable Radiation Pattern of Coupled Periodic Antenna Used Floquet Analysis”, ACES Journal, vol. 34, no. 02, pp. 379–380, Jul. 2021.

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Articles