基于三维电磁人工神经网络模型的x波段反射天线分析与设计

Selahattin Nesil, F. Güneş, Gokhan Kaya
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引用次数: 4

摘要

本文采用基于三维电磁仿真的多层感知器神经网络(MLP NN)模型对x波段反射阵进行了分析和设计。为此,首先利用h壁波导模拟器,利用3-D计算机仿真技术微波工作室(CST MWS)根据几何参数、衬底和频率,获得单元元件反射相位特性的训练和验证数据。然后,利用CST MWS测试数据对MLP神经网络进行验证。重建数据与目标数据的对比表明,MLP可以作为一种非常有效的预测反射阵反射相位的技术。将MLP神经网络建模应用于闵可夫斯基辐射器和环形辐射器,得到了它们在几何参数、基材和频率连续域中的反射特性。给出了一些典型的反射相位特性。在Taconic RF-35上设计了5 × 5的minkowski反射波,εr =3.5, tan δ =0.0018,并利用CST MWS对其辐射方向图进行了模拟。在x波段频率范围内,还观察了阵列的带宽特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and design of X-band Reflectarray antenna using 3-D EM-based Artificial Neural Network model
This paper presents analysis and design of the X-band Reflectarray using a three-dimensional EM simulation based- Multilayer Perceptron Neural Network (MLP NN) model. For this purpose, firstly training and validation data for the reflection phase characteristics of a unit element is obtained by the 3-D Computer Simulation Technology Microwave Studio (CST MWS) depending on the geometrical parameters, substrate and frequency using the H-wall waveguide simulator. Thereafter, the MLP NN is validated utilizing the CST MWS test data. Comparison of the reconstructed data with the target data shows that MLP can be used as a very efficient technique to predict the reflection phases of reflectarray. The MLP NN modeling is applied to the minkowski and circular ring shaped radiators and their reflection characteristics are obtained within the continuous domain of the geometrical parameters, substrate and frequency. Some typical reflection phase characteristics are given. Furthermore, a minkowski reflectarray of 5 × 5 on Taconic RF-35 with εr =3.5 and tan δ =0.0018 is designed and its radiation patterns are simulated by using CST MWS. The bandwidth characteristics of the array are also observed within the X-band frequency range.
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