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This paper uses a Computer Simulation Technology microwave studio to simulate the performance of a new high-directivity 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 19.5 dBi at 10 GHz, achieving a 2.1 degree increment in half power beam width, and a 7.3 dB gain increment by loading with the FSS reflector. The simulating results are consistent with our experimental results.  相似文献   
2.
本文提出了工作在X波段的单面双S型异向介质结构,在仿真、实验两个方面对这种新型异向介质的异向特性进行了验证.实验和仿真结果均表明,这种新型的异向介质结构在这一工作频率下具有负折射特性.这种新型的异向介质具有两个优势:更加便于制造和便于添加可控器件使单面异向介质成为可控异向介质.  相似文献   
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