Adjoint Optimization of 3D Printed RF GRIN Lenses

E. Whiting, S. Campbell, G. Mackertich-Sengerdy, S. Soltani, D. Werner, P. Werner
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Abstract

Additive manufacturing makes possible the rapid design and testing of gradient index (GRIN) lenses. GRIN lenses, whose refractive index profiles are spatially-varying, have been shown to improve the gain of antenna systems while in more compact forms. However, optimization of the GRIN lens profiles is difficult because the lenses can be many wavelengths wide, and the simulations slow to compute. Furthermore, the large number of design variables makes solving the GRIN lens profile a challenging problem. However, these problems can be remedied using adjoint sensitivities to compute the gradient for every design variable in only two simulations. Then local optimization approaches can follow these gradients to rapidly converge to a good candidate solution. To demonstrate the efficacy of the approach, a GRIN lens design was optimized to have the same measured broadside gain as a 20 dB standard gain horn.
3D打印射频GRIN透镜的伴随优化
增材制造使梯度折射率(GRIN)透镜的快速设计和测试成为可能。GRIN透镜,其折射率分布是空间变化的,已经被证明可以提高天线系统的增益,而在更紧凑的形式。然而,GRIN透镜轮廓的优化是困难的,因为透镜可能有很多波长宽,而且模拟计算速度很慢。此外,大量的设计变量使得求解GRIN透镜轮廓成为一个具有挑战性的问题。然而,这些问题可以通过使用伴随灵敏度来解决,仅在两个模拟中计算每个设计变量的梯度。然后,局部优化方法可以根据这些梯度快速收敛到一个好的候选解。为了证明该方法的有效性,对GRIN透镜设计进行了优化,使其具有与20 dB标准增益喇叭相同的测量宽侧增益。
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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