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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >A Neural-Network Method for the Analysis of Multilayered Shielded Microwave Circuits
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A Neural-Network Method for the Analysis of Multilayered Shielded Microwave Circuits

机译:多层屏蔽微波电路分析的神经网络方法

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In this paper, a neural-network-based method for the analysis of practical multilayered shielded microwave circuits is presented. Using this idea, a radial basis function neural network (RBFNN) is trained to approximate the space-domain multilayered media boxed Green's functions used in the integral-equation (IE) method. Once the RBFNN has been trained, the outputs of the neural network (NN) replace the exact Green's functions, during the numerical solution of the IE. The computation of the RBFNN output values is very fast in comparison with the numerical methods used to calculate the exact Green's functions. This paper describes two novel strategies for efficiently training the RBFNN. In the first strategy, the input space of the RBFNN is divided into several spatial and frequency regions. The spatial subdivision is extended for the first time to both observation and source regions. In addition, the subdivision of the observation points regions is applied in a novel manner to the whole cross section of the metallic box. The second strategy combines the above region subdivision with an adaptive selection of the neurons variances in each region. The accuracy and the computational gain achieved with the NN method proposed makes possible the implementation of computer-aided-design tools that can be used for the analysis and design of integrated shielded microwave circuits (e.g., monolithic microwave integrated circuit devices) on a real-time basis.
机译:本文提出了一种基于神经网络的实用多层屏蔽微波电路分析方法。使用这种思想,对径向基函数神经网络(RBFNN)进行了训练,以近似积分方程(IE)方法中使用的空域多层介质盒装格林函数。一旦对RBFNN进行了训练,在IE的数值解过程中,神经网络(NN)的输出将替换确切的格林函数。与用于计算精确格林函数的数值方法相比,RBFNN输出值的计算速度非常快。本文介绍了两种有效训练RBFNN的新颖策略。在第一种策略中,RBFNN的输入空间分为几个空间和频率区域。空间细分首次扩展到观察区域和源区域。另外,观察点区域的细分以新颖的方式应用于金属盒的整个横截面。第二种策略将上述区域细分与每个区域中神经元差异的自适应选择结合起来。所提出的NN方法所实现的准确性和计算增益使计算机辅助设计工具的实现成为可能,该工具可用于在实际设计中对集成屏蔽微波电路(例如,单片微波集成电路器件)进行分析和设计。时间基础。

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