Hybrid Fishnet Metamaterial Based on Liquid Crystal and P-I-N Diodes for Reconfigurable Transmitarrays at $10 \,\mathrm{GHz}$

IF 4.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE journal of microwaves Pub Date : 2024-12-27 DOI:10.1109/JMW.2024.3518772
Adrian Diepolder;Lukas Schmidt;Susanne Brandl;Philipp Hinz;Christian Waldschmidt;Christian Damm
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Abstract

This article presents a reconfigurable unit cell for transmitarrays at $10 \,\mathrm{GHz}$ based on the fishnet metamaterial structure. The proposed design achieves a phase shift of up to $180 \mathrm{^{\circ }}$ between different states and additional tunability in each phase state by switching the electric response using p-i-n diodes and simultaneously tuning the magnetic response by employing liquid crystal. Thus, it offers the potential to overcome the limitations of switchable unit cells with few discrete phase states in terms of achievable antenna gain and side lobe level. With an insertion loss of $1.8$$2.5 \,\mathrm{dB}$ in combination with its high phase tunability it exhibits much higher performance than designs using only liquid crystal. A lumped-element model for prediction of the unit cell behavior is proposed, allowing to reduce the number of full-wave simulations during performance analysis. The biasing network for the liquid crystal is designed for integration in an active-matrix configuration, greatly reducing the complexity of the control circuit. To verify the proposed design, a single unit cell prototype is manufactured and measured inside a waveguide simulator, demonstrating good agreement with full-wave simulations.
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基于液晶和P-I-N二极管的混合鱼网超材料用于可重构发射阵列,$10 \,\mathrm{GHz}$
本文提出了一种基于鱼网超材料结构的10 \,\ mathm {GHz}$传输阵列的可重构单元电池。所提出的设计通过使用p-i-n二极管切换电响应并同时使用液晶调谐磁响应,实现了不同状态之间高达180 \ mathm {^{\circ}}$的相移和每个相态的额外可调性。因此,就可实现的天线增益和旁瓣电平而言,它提供了克服具有很少离散相位状态的可切换单元的限制的潜力。插入损耗为1.8 - 2.5,结合其高相位可调性,它比仅使用液晶的设计表现出更高的性能。提出了一种集总元模型,用于预测单元胞的行为,允许在性能分析期间减少全波模拟的数量。液晶偏置网络采用有源矩阵集成设计,大大降低了控制电路的复杂性。为了验证所提出的设计,制作了一个单胞原型,并在波导模拟器中进行了测量,结果与全波模拟结果吻合良好。
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审稿时长
8 weeks
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