2009 Volume 18 Issue 1
Article Contents

Sun Yong-Zhi, Ran Li-Xin, Peng Liang, Wang Wei-Guang, Li Ting, Zhao Xu, Chen Qiu-Lin. 2009: The research of high-directive anisotropic magnetic metamaterial antenna loaded with frequency-selective surface, Chinese Physics B, 18(1): 174-178.
Citation: Sun Yong-Zhi, Ran Li-Xin, Peng Liang, Wang Wei-Guang, Li Ting, Zhao Xu, Chen Qiu-Lin. 2009: The research of high-directive anisotropic magnetic metamaterial antenna loaded with frequency-selective surface, Chinese Physics B, 18(1): 174-178.

The research of high-directive anisotropic magnetic metamaterial antenna loaded with frequency-selective surface

  • Available Online: 30/01/2009
  • Fund Project: the National Natural Science Foundation of China (Grant 60371010)
  • This paper uses a Computer Simulation Technology microwave studio to simulate the performance of a new highdirectivity anisotropic magnetic metamaterial antenna loaded with a frequency-selective surface. Frequency-selective surface with cross-dipole element has a great effect on the directivity, radiation pattern, and gain of such an antenna. The experimental results show that frequency-selective surface (FSS) significantly improve the radiation performance of anisotropic magnetic metamaterial antenna. For example, as a single anisotropic magnetic metamaterial antenna, half power beam width is 4 degrees in the H planes, and the gain of this antenna is 19.5dBi at 10GHz, achieving a 2.1 degree increment in half power beam width, and a 7.3dB gain increment by loading with the FSS reflector. The simulating results are consistent with our experimental results.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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The research of high-directive anisotropic magnetic metamaterial antenna loaded with frequency-selective surface

Abstract: This paper uses a Computer Simulation Technology microwave studio to simulate the performance of a new highdirectivity anisotropic magnetic metamaterial antenna loaded with a frequency-selective surface. Frequency-selective surface with cross-dipole element has a great effect on the directivity, radiation pattern, and gain of such an antenna. The experimental results show that frequency-selective surface (FSS) significantly improve the radiation performance of anisotropic magnetic metamaterial antenna. For example, as a single anisotropic magnetic metamaterial antenna, half power beam width is 4 degrees in the H planes, and the gain of this antenna is 19.5dBi at 10GHz, achieving a 2.1 degree increment in half power beam width, and a 7.3dB gain increment by loading with the FSS reflector. The simulating results are consistent with our experimental results.

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