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八边形SSRR结构左手材料及其在微带天线中的应用 被引量:1
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作者 孙烨 曹其栋 +2 位作者 史美霞 刘辉 孙绪保 《电子信息对抗技术》 2017年第6期82-86,共5页
提出了一种基于八边形单开口谐振环(Split Single-Ring Resonator,SSRR)结构的左手材料,在6.7~11.5 GHz工作频段内该材料的等效磁导率和介电常数均为负值。利用左手材料的平板聚焦特性,将该结构的左手材料作为覆盖层置于中心工作频率为1... 提出了一种基于八边形单开口谐振环(Split Single-Ring Resonator,SSRR)结构的左手材料,在6.7~11.5 GHz工作频段内该材料的等效磁导率和介电常数均为负值。利用左手材料的平板聚焦特性,将该结构的左手材料作为覆盖层置于中心工作频率为11.4GHz的微带天线上方,以提高天线的定向辐射能力。研究结果表明,加载左手材料覆盖层后微带天线E面和H面的主瓣半功率波束宽度(HPBW)分别缩减了37°、41°,增益提高了2.9d B。 展开更多
关键词 左手材料 微带天线 八边形ssrr 半功率波束宽度
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波兰拟建顺丁和SSRR装置
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作者 顾约伦 《高桥石化》 2002年第4期29-29,共1页
关键词 波兰 拟建 ssrr 装置 顺丁橡胶 溶液丁苯橡胶
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Bandwidth Enhancement and Size Reduction of Microstrip Patch Antenna by Magnetoinductive Waveguide Loading
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作者 Jayant G. Joshi Shyam S. Pattnaik +1 位作者 Swapna Devi Mohan R. Lohokare 《Wireless Engineering and Technology》 2011年第2期37-44,共8页
A planar magnetoinductive (MI) waveguide loaded rectangular microstrip patch antenna is presented and discussed. The MI waveguide consists of two planar metamaterial split squared ring resonators (SSRRs) placed in bet... A planar magnetoinductive (MI) waveguide loaded rectangular microstrip patch antenna is presented and discussed. The MI waveguide consists of two planar metamaterial split squared ring resonators (SSRRs) placed in between two microstrip lines. The backward wave propagation takes place through this structure. The rectangular microstrip patch antenna is magnetically coupled to the MI waveguide. The unloaded rectangular microstrip patch antenna resonates at 37.10 GHz. When loaded with planar MI waveguide, its resonant frequency is reduced to 9.38 GHz with the bandwidth and gain of 44% and 4.16 dBi respectively. In loaded condition, the dimension of antenna is 12.50 mm × 3.70 mm (0.390 λ × 0.115 λ). The appreciable bandwidth is achieved in such a small size antenna. The pass band frequency of MI waveguide is predicted by using the theoretical model of dispersion equation. The effective medium theory is used to verify the metamaterial characteristics of SSRR. The simulated results and theoretical calculations are also presented. The results show that the proposed method can be used to design compact and high bandwidth microstrip patch antennas. 展开更多
关键词 BANDWIDTH Enhancement Magnetoinductive WAVEGUIDE SPLIT Squared Ring RESONATOR (ssrr) NEGATIVE PERMEABILITY Magnetic Coupling Dispersion Relation
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