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Millimeter-Wave Thin Lens Employing Mixed-Order Elliptic Filter Arrays

机译:采用混合阶椭圆滤光片阵列的毫米波薄透镜

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This communication presents a novel approach for designing a simplified and cost-effective millimeter-wave thin lens by reducing the number of substrates and metal layers for a given tunable range of the phase shift. It is demonstrated that this can be achieved by employing mixed-order elliptic filter arrays where the different orders of the filter are responsible for different tunable ranges of the phase shift. The key features of the elliptic filters and their mixed-order array are introduced. It is found that constructively utilizing the interlayer coupling between the metal layers renders an elliptic filter response, and the mixed-order configuration of the elliptic filter array can be utilized to design the devised thin lens. The design procedure for the affordable thin lens configuration is discussed. The empirical and simulated results demonstrate that the conventional planar lens can be further simplified in terms of the number of substrates and metal layers, maintaining the tunable range of the phase shift. It is confirmed that the fabricated mixed-order lens is less than 0.05 $lambda 0$ in total thickness and has a gain of up to 12 dB with $f/D = 0.7$ .
机译:该交流提出了一种新颖的方法,可通过在给定的可调相移范围内减少基板和金属层的数量来设计一种简化且具有成本效益的毫米波薄透镜。可以证明,这可以通过采用混合阶椭圆滤波器阵列来实现,其中滤波器的不同阶负责相移的不同可调范围。介绍了椭圆滤波器及其混合阶阵列的关键特性。已经发现,建设性地利用金属层之间的层间耦合产生椭圆滤光器响应,并且可以利用椭圆滤光器阵列的混合阶结构来设计所设计的薄透镜。讨论了可负担得起的薄透镜配置的设计过程。实验和模拟结果表明,传统的平面透镜在基板和金属层的数量方面可以进一步简化,并保持相移的可调范围。可以确认,制造的混合阶透镜的总厚度小于0.05λ0 $,并且在$ f / D = 0.7 $的情况下增益高达12 dB。

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