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Dual-band circularly-polarized shared-aperture array for C/X-Band satellite communications

机译:用于C / X波段卫星通信的双波段圆极化共享孔径阵列

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摘要

A novel method of achieving a single-feed circularly-polarized (CP) microstrip antenna with both broad impedance bandwidth and axial ratio (AR) bandwidth is presented. The CP characteristics are generated by employing a resonator to excite the two orthogonal modes of the patch via two coupling paths and the required 90 o phase difference is achieved by using the different orders of the two paths. The presented method, instead of conventional methods that power dividers and phase delay lines are usually required, not only significantly enhances the bandwidths of the antenna, but also results in a compact feed, reduced loss and high gain. Based on this method, a dual-band shared-aperture CP array antenna is implemented for C/X-band satellite communications. The antenna aperture includes a 2 × 2 array at C-band and a 4 ×4 array at X-band. To accommodate the C/X-band elements into the same aperture while achieving a good isolation between them, the C-band circular patches are etched at the four corners. The measured results agree well with the simulations, showing a wide impedance bandwidth of 21% and 21.2% at C-and X-band, respectively. The C-and X-band 3-dB AR bandwidths are 13.2% and 12.8%. The array also exhibits a high aperture efficiency of over 55%, low side-lobe (C-band: −12.5 dB; X-band: −15 dB) and high gain (C-band: 14.5 dBic; X-band: 17.5 dBic).
机译:提出了一种同时具有宽阻抗带宽和轴向比(AR)带宽的单馈圆形极化(CP)微带天线的新颖方法。通过使用谐振器通过两条耦合路径激发贴片的两个正交模式来生成CP特性,并通过使用两条路径的不同阶数实现所需的90 o相位差。提出的方法代替通常需要功率分配器和相位延迟线的常规方法,不仅显着增强了天线的带宽,而且还导致了紧凑的馈电,降低的损耗和高增益。基于此方法,为C / X波段卫星通信实现了双波段共享孔径CP阵列天线。天线孔径在C波段包括2×2阵列,在X波段包括4×4阵列。为了将C / X波段元素容纳在相同的孔中,同时在它们之间实现良好隔离,在四个角刻蚀了C波段圆形贴片。测量结果与仿真非常吻合,显示出在C波段和X波段的阻抗带宽分别为21%和21.2%。 C波段和X波段3 dB AR带宽分别为13.2%和12.8%。该阵列还具有超过55%的高孔径效率,低旁瓣(C波段:-12.5 dB; X波段:-15 dB)和高增益(C波段:14.5 dBic; X波段:17.5) dBic)。

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