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机构地区:[1]中国电子科技集团公司第三十八研究所,安徽合肥230088
出 处:《雷达科学与技术》2012年第4期448-452,共5页Radar Science and Technology
摘 要:微带贴片天线已广泛应用于雷达系统,文中介绍了一种新型背腔式单层微带贴片天线,辐射贴片采用微带线馈电,为增加工作带宽,提供了两种不同的贴片形状,第一种是E形贴片,仿真及测试结果表明,此种单元在驻波比优于2的条件下可实现45%的阻抗带宽,但该单元的波瓣带宽较窄。为抑制交叉极化,通过在E形贴片上开四个槽,得到了第二种改进的E形贴片。该单元可实现14%的频带内驻波比优于1.5,同时交叉极化优于-15dB。对C波段8×16单元实验小阵的测试结果表明,该天线在17.9%的频段内具有良好的交叉极化性能及较高的工作效率。The microstrip patch antenna has found wide applications in radar. This paper presents a no- vel cavity-backed, wideband microstrip single layer patch antenna. The radiating patch is fed by a microstrip line. In order to increase bandwidth, two kinds of patches in different shapes are employed. The first kind of patch is E-shaped. Simulations and measurements show that this kind of antenna can realize 45% impedance bandwidth for VSWR≤2, but its pattern bandwidth is narrow. To suppress cross-polarization, the second modified E-shape patch is proposed, resulting from cutting four slots on the Eshaped patch. It can achieve 14 % impedance bandwidth for VSWR≤1. 5, with low cross-polarization of less than - 15.0dB across the op- eration band. A C-band demo array of 8× 16 elements has been fabricated and tested. The measurement re suits show that this array antenna exhibits low cross-polarization level and high radiation efficiency within a relative bandwidth of 17.9 %,
分 类 号:TN821.4[电子电信—信息与通信工程] TN957.2
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