首页> 外文期刊>Antennas and Wireless Propagation Letters, IEEE >Three-Dimensionally Printed, Shaped, Engineered Material Inhomogeneous Lens Antennas for Next-Generation Spaceborne Weather Radar Systems
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Three-Dimensionally Printed, Shaped, Engineered Material Inhomogeneous Lens Antennas for Next-Generation Spaceborne Weather Radar Systems

机译:用于下一代星载气象雷达系统的三维印刷,异型,工程材料非均质透镜天线

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摘要

In this letter, three-dimensionally (3-D) printed shaped inhomogeneous dielectric lens antennas are synthesized using a novel approach based on geometrical optics (GO) and the particle swarm optimization (PSO) method. The GO method is used to trace rays to the aperture following the amplitude, phase, and polarization along curved space trajectories through inhomogeneous media to evaluate potential designs. These designs are specified by power series polynomials describing the surface topology and permittivity functions filling the volume of the shaped lens. The optimum design is obtained by integrating the GO analysis engine with the PSO into an optimization loop. The complex designed materials that result can be printed using new 3-D printers. New techniques are developed to print structures using fused deposition modeling (FDM), which contain complex overhanging features. Measured and simulated results are provided for all 3-D printed synthesized inhomogeneous lenses.
机译:在这封信中,使用基于几何光学(GO)和粒子群优化(PSO)方法的新颖方法合成了三维(3-D)印刷形状的非均质介电透镜天线。 GO方法用于通过不均匀介质沿着弯曲的空间轨迹沿着振幅,相位和偏振跟踪光线到孔径,以评估潜在的设计。这些设计是通过幂级数多项式指定的,该多项式描述填充了成形透镜体积的表面拓扑和介电常数函数。通过将GO分析引擎与PSO集成到优化循环中,可以获得最佳设计。可以使用新的3D打印机打印出复杂的设计材料。开发了使用融合沉积模型(FDM)打印结构的新技术,该结构包含复杂的悬垂特征。提供了所有3D打印合成不均匀镜片的测量和模拟结果。

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