<p>A reconfigurable antenna with simple polarization switching mechanism and compact size characteristics is presented in this paper. The primary radiating aperture of the proposed design is four parasitic elements arranged in a 2 <InlineEquation ID="IEq1"> <InlineMediaObject> <ImageObject Color="BlackWhite" FileRef="41598_2025_97908_Article_IEq1.gif" Format="GIF" Height="13" Rendition="HTML" Resolution="72" Type="Linedraw" Width="19" /> </InlineMediaObject> <EquationSource Format="TEX">\(\times\)</EquationSource> </InlineEquation> 2 configuration. This radiating aperture is coupled with an excitation source whose polarizations can be controlled by a switchable feeding network. By employing only two PIN diodes, the proposed antenna can produce unidirectional beams with different polarizations, including linearly polarized (LP), left-hand and right-hand circularly polarized (LHCP, RHCP) modes. It is worth mentioning that employing a switchable feeding network helps to minimize the negative effect of the biasing circuit to the antenna operation characteristics. Experimental results indicate that the consistent operational bandwidth across all states spans from 2.44 to 2.47 GHz. Furthermore, the recorded broadside gain reaches approximately 4.8 dBi. In comparison with existing studies, the proposed antenna achieves multiple polarization configurations while utilizing the least number of diodes and maintaining a compact design.</p>

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A method to design polarization reconfigurable antenna with simple switching mechanism and compact size characteristics

  • Thai Nguyen-Dinh,
  • Tan Dao-Duc,
  • Dinh Nguyen-Quoc,
  • Hung Tran-Huy,
  • Niamat Hussain

摘要

A reconfigurable antenna with simple polarization switching mechanism and compact size characteristics is presented in this paper. The primary radiating aperture of the proposed design is four parasitic elements arranged in a 2 \(\times\) 2 configuration. This radiating aperture is coupled with an excitation source whose polarizations can be controlled by a switchable feeding network. By employing only two PIN diodes, the proposed antenna can produce unidirectional beams with different polarizations, including linearly polarized (LP), left-hand and right-hand circularly polarized (LHCP, RHCP) modes. It is worth mentioning that employing a switchable feeding network helps to minimize the negative effect of the biasing circuit to the antenna operation characteristics. Experimental results indicate that the consistent operational bandwidth across all states spans from 2.44 to 2.47 GHz. Furthermore, the recorded broadside gain reaches approximately 4.8 dBi. In comparison with existing studies, the proposed antenna achieves multiple polarization configurations while utilizing the least number of diodes and maintaining a compact design.