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An optimized low loss feed network of a compact Vivaldi antenna array for high quality radar imaging system

机译:用于高质量雷达成像系统的紧凑型Vivaldi天线阵列的优化低损耗馈电网络

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摘要

A low cost 8×1 antipodal Vivaldi subarray with low dispersion and almost constant gain has been developed for high quality imaging applications. The array antenna is fed by a low-loss SIW feed network with elegant use of vias to minimize insertion loss over 8–12 GHz band. The feed network is an 8-way divider fed by a novel wideband GCPW transition, and directly connected to the antipodal Vivaldi elements. The SIW feed is comprised of various T and Y junctions where the vias'' numbers, locations and shapes are optimized to achieve less than 1 dB insertion loss, ±4° and ±0.9 dB phase and amplitude imbalances, respectively. Measured results of the subarray performance are consistent with our simulation; it has 9–13 dB gain, −14 dB SLL, and better than 20 dB front-to-back ratio and occupies 10cm×6cm. Images obtained using the developed array demonstrated significant improvement compared to previously developed feeds with microstrip or unoptimized SIW splitters.
机译:已经开发出了具有低色散和几乎恒定增益的低成本8×1对映Vivaldi子阵列,用于高质量成像应用。阵列天线由低损耗SIW馈电网络馈电,并巧妙地使用过孔,以最小化8-12 GHz频带内的插入损耗。馈电网络是一个8分频器,由新颖的宽带GCPW过渡馈电,并直接连接至对立Vivaldi元件。 SIW馈送由各种T和Y结组成,其中对通孔的数量,位置和形状进行了优化,以分别实现小于1 dB的插入损耗,±4°和±0.9 dB的相位和幅度不平衡。子阵列性能的测量结果与我们的仿真一致;它具有9–13 dB的增益,−14 dB的SLL,并且前后比好于20 dB,占用10cm×6cm。与以前开发的带有微带或未优化的SIW分离器的进料相比,使用发达的阵列获得的图像显示出显着的改善。

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