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Design of a broadband, dual-band, large reflectarray using multi open loopelements

机译:使用多开环元素设计宽带,双频,大型反射阵列

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Microstrip reflectarray technology is rapidly becoming' an attractive alternative to the more traditional parabolic reflector and phased array antennas due to its various advantages such as low profile, significant simplification of feed systems in the case of multi-polarization/band antenna systems and low loss as discussed in [1,2]. The goal of this paper is designing a high gain, large, dual-band reflectarray as a satellite portable terminal at Ku-band. The conventional reflectors were satisfactorily used to fulfil all the electrical requirements for this particular application. 'However, application of such reflectors in a portable scenario is a complicated task due to mechanical considerations. The reflectarray antenna designed in this paper can overcome this shortcoming: This reflectarray was etched onto 9 substrate panels of 40 cm x 40 cm each,, which were finally assembled to realize the larger 120 cm x 120 cm reflectarray. Therefore, the reflectarray assembly is superior to its conventional reflector counterpart from portability point of view. The antenna is designed for two frequency bands: 11.4 GHz — 12.8 GHz for receive and 13.7 GHz- 14.5 GHz for transmit, both with linear but orthogonal polarizations. An optimization method as introduced in [3] was used in this paper to design the reflectarray elements for the receive band due to the large bandwidth requirement at this band. For the transmit band elements, double square loop elements [4] were used and conventional design rules for a reflectarray were applied to adjust the dimensions of the cell elements.
机译:微带反射阵列技术正在迅速成为“更传统的抛物线反射器和相控阵天线的有吸引力的替代方案,并且由于其各种优点,例如低轮廓,在多极化/频带天线系统的情况下的馈电系统的显着简化,以及低损耗[1,2]讨论。本文的目标是在Ku波段设计高增益,大型双频频率,作为卫星便携式终端。传统的反射器令人满意地用于满足该特定应用的所有电气需求。然而,由于机械考虑,在便携式场景中的应用是一种复杂的任务。本文设计的反射阵列天线可以克服这种缺点:将该反射阵列蚀刻到每个40cm×40cm 40cm的9个基板面板上,最终组装以实现较大的120cm×120cm反射阵列。因此,反射阵列组件优于其传统的反射器对应于可移植性的观点。天线专为两个频段:11.4GHz - 12.8 GHz,接收和13.7GHz-14.5 GHz用于发射,具有线性但正交偏振。本文使用了如[3]中引入的优化方法,以设计由于该频段上的大带宽要求而设计的反射阵列元素。对于发射带元件,使用双方环元件[4],并应用用于反射阵列的传统设计规则以调整细胞元件的尺寸。

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