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Dual-band dual-polarized perforated microstrip antennas for SAR applications

机译:SAR应用的双频双极化穿孔微带天线

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For dual-band dual-polarized synthetic aperture radar (SAR) applications a compact low-profile design is investigated. The operating frequencies are in the L and C-bands, centered about 1.275 and 5.3 GHz, respectively. Since the C-band frequency is larger by a factor of four, its array elements and inter-element separations are smaller by the same ratio. Thus, to allow similar scan ranges for both bands, the L-band elements are selected as perforated patches to enable the placement of C-band elements within them. Stacked-patch configurations were used to meet the bandwidth requirements, especially in the L-band. The C-band element was designed numerically, but the perforated L-band one required final experimental optimization. Also, in the latter case of L-band, a balanced transmission line feed was used to minimize cross polarization. For the C-band elements, slot coupling was used and, to simplify the feed, symmetric parasitic slots were incorporated to minimize cross polarization. No vertical connections were utilized, and electromagnetic couplings resulted in a compact low-profile design, with an electrically and thermally symmetric geometry.
机译:对于双频双极化合成孔径雷达(SAR)应用,研究了紧凑的薄型设计。工作频率在L波段和C波段,分别以约1.275 GHz和5.3 GHz为中心。由于C频段的频率大四倍,因此其阵列元素和元素间距也减小了相同的比率。因此,为了允许两个频带具有相似的扫描范围,选择L波段元素作为穿孔斑块,以将C波段元素放置在其中。堆叠补丁配置用于满足带宽要求,尤其是在L波段。 C波段元素是用数字设计的,但穿孔的L波段元素需要最终的实验优化。同样,在后一种L波段的情况下,使用了平衡的传输线馈电以最小化交叉极化。对于C波段元件,使用缝隙耦合,并且为了简化馈送,并入了对称寄生缝隙,以最大程度地减小交叉极化。没有使用垂直连接,电磁耦合导致了紧凑的薄型设计,具有电和热对称的几何形状。

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