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Gaussian beam and physical optics iteration technique for wideband beam waveguide feed design

机译:高斯光束和物理光学迭代技术用于宽带束波导馈源设计

摘要

The Gaussian beam technique has become increasingly popular for wideband beam waveguide (BWG) design. However, it is observed that the Gaussian solution is less accurate for smaller mirrors (approximately less than 30 lambda in diameter). Therefore, a high-performance wideband BWG design cannot be achieved by using the Gaussian beam technique alone. This article demonstrates a new design approach by iterating Gaussian beam and BWG parameters simultaneously at various frequencies to obtain a wideband BWG. The result is further improved by comparing it with physical optics results and repeating the iteration.
机译:高斯光束技术在宽带束波导(BWG)设计中已变得越来越流行。但是,可以观察到,对于较小的反射镜(直径约小于30λ),高斯解决方案的精度较低。因此,仅使用高斯光束技术无法实现高性能宽带BWG设计。本文演示了一种新的设计方法,该方法通过在各种频率下同时迭代高斯光束和BWG参数来获得宽带BWG。通过将其与物理光学结果进行比较并重复迭代,可以进一步改善结果。

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