Verification of Lens Antenna Shaping Based on Refraction Angles

F. Ansarudin, T. Rahman, Yoshihide Yamada
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Abstract

A dielectric lens antenna becomes a promising candidate for 5G mobile system in the range of millimeter wave frequency band because of the simplicity of the structure and ease of installation. Special radiation pattern such as low sidelobe, high gain and multibeam are expected to achieve many radiation patterns. This paper describes the verification of lens shaping based on refraction angles at lens surfaces. The lens surface shaping program was developed using a MATLAB software. The ratio of sinusoidal function of incident angle and the refracted angle should be equal to the refractive index. The angular relations are checked for various sample points. At points where lens curvature is sufficient, angle relations agree very well with the refractive index. At point where lens surface becomes flat, incident and refracted angles become small thus rendering the agreement of angle relation and refractive index insufficient. As a whole, surface designing accuracy is verified by comparing the refraction angles for both lens surfaces obtained from MATLAB simulation and angular calculation.
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基于折射角的透镜天线整形验证
介质透镜天线由于结构简单、易于安装,成为毫米波频段5G移动系统的理想选择。低旁瓣、高增益和多波束等特殊的辐射方向图有望实现多种辐射方向图。本文描述了基于透镜表面折射角的透镜成形验证。利用MATLAB软件开发了透镜表面整形程序。入射角与折射角的正弦函数之比应等于折射率。对不同采样点的角关系进行了检验。在透镜曲率足够大的点上,角度关系与折射率非常吻合。当透镜表面变平时,入射角和折射角变小,使得角度关系和折射率的一致性不足。通过对比MATLAB仿真和角度计算得到的两种透镜表面的折射角,验证了表面设计的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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