An ultra-wideband printed antenna with low radar cross section

被引:0
作者
机构
[1] Information and Navigation Institute, Air Force Engineering University
来源
Yuan, Z.-D. (yzdtnyt@126.com) | 2013年 / Science Press卷 / 35期
关键词
Frequency Selective Surfaces (FSS); High gain; Printed antenna; Radar Cross Section (RCS); Ultra-wideband;
D O I
10.3724/SP.J.1146.2012.01518
中图分类号
学科分类号
摘要
An ultra-wideband and low RCS (Radar Cross Section) printed antenna is designed and fabricated using the periodically loaded fractal complementary Frequency Selective Surfaces (FSS) on the upper patch and bottom ground plane, respectively. Simulated results show that the relative bandwidth of this novel antenna is significantly broadened from about 2.9% to about 140%, the RCS is reduced effectively to 25.15 dB, and the gain is maitained a high value within the entire band (3.9~22.1 GHz) compared to the original antenna. Experimental data show a reasonably good agreement between the simulation and measured results, and illustrate the validity of the method.
引用
收藏
页码:2013 / 2018
页数:5
相关论文
共 13 条
[1]  
Costantine J., Al-Husseini M., Ramadan A., Complexity reduction of a reconfigurable U-Koch microstrip antenna Using graph models, Antennas and Propagation Society International Symposium, pp. 1-4, (2010)
[2]  
Li Z.-R., Xie D.-Y., Zhang H., Et al., A microstrip wide slot antenna with band notching property for ultra-wideband application, Microwave and Millimeter Wave Technology, pp. 957-960, (2010)
[3]  
Zhang F., Liu X.-J., Ji Y.-C., Et al., A novel wideband compact tapered slot antenna for shallow icecap detection radar applications, Journal of Electronics & Information Technology, 33, 6, pp. 1471-1474, (2011)
[4]  
Wutk, Freuuency Selective Surface and GridArray, pp. 1-10, (1995)
[5]  
Munk B.A., Freuuency Selective Surface: Theory and Design, pp. 1-21, (2000)
[6]  
Lu B., Gong S.-X., Ling J., Et al., A novel frequency selective surface structure and its application to RCS reduction of antennas, Journal of Electronics & Information Technology, 32, 1, pp. 199-202, (2010)
[7]  
Liu T., Cao X.-Y., Gao J., Et al., Miniaturized broadband and high gain metamaterial patch antenna, Journal of Xidian University (Natural Science), 39, 3, pp. 161-165, (2012)
[8]  
Toubet M.S., Hajj M., Chantalat R., Et al., Wide bandwidth, high-gain, and low-profile EBG prototype for high power applications, IEEE Antennas and Wireless Propagation Letters, 10, pp. 1362-1365, (2011)
[9]  
Lin S.-Y., Wu Q., Hua J., Et al., A broadband fractal AMC ground plane for low-profile antennas, Global Symposium on Millimeter Waves, pp. 70-73, (2012)
[10]  
Miao Z.-L., Huang C., Ma X., Et al., Design of a patch antenna with dual-band radar cross-section reduction, Microwave and Optical Technology Letters, 54, 11, pp. 2516-2520, (2012)