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Flat Luneburg Lens via Transformation Optics for Directive Antenna Applications

机译:通过转换光学的平面吕讷堡透镜,用于定向天线应用

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The great flexibility offered by transformation optics for controlling electromagnetic radiation by virtually re-shaping the electromagnetic space has inspired a myriad of dream-tailored electromagnetic devices. Here we show a 3D-transformed microwave Luneburg lens antenna which demonstrates high directivity, low side-lobe level, broadband response and steerable capabilities. A conventional Luneburg lens is redesigned accounting for dielectric materials that implement a coordinate transformation, modifying the lens geometry to accommodate its size and shape for easy integration with planar microwave antenna applications. An all dielectric lens is manufactured following a thorough holistic analysis of ceramic materials with different volume fractions of bi-modal distributed titanate fillers. Fabrication and measurements of a 3-D flat Luneburg lens antenna validate the design and confirm a high-directivity performance. A directivity of 17.96 dBi, low side-lobe levels for both main planes $sim -26~{rm dB}$, excellent directivity performance within the X-band and beam-steering up to 34$^{circ}$ were achieved.
机译:变换光学器件通过虚拟地重新塑造电磁空间来控制电磁辐射所提供的巨大灵活性激发了无数梦dream以求的电磁设备。在这里,我们展示了经过3D转换的微波Luneburg透镜天线,该天线展示了高方向性,低旁瓣电平,宽带响应和可操纵能力。重新设计了传统的Luneburg透镜,考虑了实现坐标转换的介电材料,修改了透镜几何形状以适应其尺寸和形状,从而易于与平面微波天线应用集成。全介电透镜是在对具有不同体积分数的双峰分布钛酸酯填料的陶瓷材料进行全面分析之后制造的。 3-D平面Luneburg透镜天线的制造和测量验证了设计并确认了高指向性。达到了17.96 dBi的方向性,两个主平面$ sim -26〜{rm dB} $的低旁瓣电平,在X波段内出色的方向性性能以及高达34 $ ^ {circ} $的波束转向性能。

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