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Experimental demonstration of conformal phased array antenna via transformation optics

机译:共形相控阵天线通过变换光学的实验演示

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Transformation Optics has been proven a versatile technique for designing novel electromagnetic devices and it has much wider applicability in many subject areas related to general wave equations. Among them, quasi-conformal transformation optics (QCTO) can be applied to minimize anisotropy of transformed media and has opened up the possibility to the design of broadband antennas with arbitrary geometries. In this work, a wide-angle scanning conformal phased array based on all-dielectric QCTO lens is designed and experimentally demonstrated. Excited by the same current distribution as such in a conventional planar array, the conformal system in presence of QCTO lens can preserve the same radiation characteristics of a planar array with wide-angle beam-scanning and low side lobe level (SLL). Laplace’s equation subject to Dirichlet-Neumann boundary conditions is adopted to construct the mapping between the virtual and physical spaces. The isotropic lens with graded refractive index is realized by all-dielectric holey structure after an effective parameter approximation. The measurements of the fabricated system agree well with the simulated results, which demonstrate its excellent wide-angle beam scanning performance. Such demonstration paves the way to a robust but efficient array synthesis, as well as multi-beam and beam forming realization of conformal arrays via transformation optics.
机译:事实证明,Transformation Optics是设计新颖电磁设备的通用技术,并且在与通用波动方程式相关的许多主题领域中具有更广泛的适用性。其中,准共形变换光学器件(QCTO)可用于使变换后的介质的各向异性最小化,并为设计具有任意几何形状的宽带天线开辟了可能性。在这项工作中,基于全电介质QCTO透镜的广角扫描共形相控阵被设计和实验证明。受到与常规平面阵列相同的电流分布的激励,存在QCTO透镜的共形系统可以保持具有广角光束扫描和低旁瓣电平(SLL)的平面阵列的相同辐射特性。采用受Dirichlet-Neumann边界条件约束的拉普拉斯方程来构建虚拟空间和物理空间之间的映射。在有效参数逼近后,通过全介电孔结构实现折射率渐变的各向同性透镜。所制造系统的测量结果与模拟结果吻合得很好,证明了其出色的广角光束扫描性能。这样的演示为稳健而有效的阵列合成以及通过变换光学器件实现共形阵列的多光束和波束形成铺平了道路。

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