基于差分进化算法的热点引导等效源建模方法

      Hotspot guided equivalent source modeling method based on differential evolution algorithm

      • 摘要: 本研究提出了一种利用近场扫描技术建立被测电子设备辐射发射等效源模型的新方法,模型基于一组磁偶极子建立,这些磁偶极子可以替代被测设备,并辐射出近似相同的磁场分布。采用差分进化算法通过近场测量得到的磁场强度幅值来确定磁偶极子的位置和磁偶极矩的大小,并提出一种根据被测设备总磁场强度热点范围限定磁偶极子位置搜索范围的优化方法,在不显著降低模型精度的情况下提高了建立模型的效率。利用所提出的方法分别建立了圆形贴片天线和微控制单元的等效源模型, 等效源模型能够被快速建立并能准确地描述被测设备的辐射特性,验证了本文方法的有效性。

         

        Abstract: In this paper, a new method is proposed to establish the equivalent source model of the radiation emission of the electronic device under test by using near-field scanning technology. The model is based on a set of magnetic dipoles that can replace the device under test and radiate approximately the same magnetic field distribution. In order to determine the model parameters, the differential evolution algorithm is used to determine the position of the magnetic dipole and the magnitude of the magnetic dipole moment through the magnetic field intensity amplitude measured in the near field. In order to further improve the efficiency of model building, an optimization method is proposed to limit the location search range of magnetic dipoles according to the hot spot range of the total magnetic field intensity of the device under test. This method improves the efficiency of model building without significantly reducing the accuracy of the model. The proposed method is used to establish the equivalent source models of the circular patch antenna and the microcontrol unit respectively, and the effectiveness of the proposed method is verified. The results show that the equivalent source model can be established quickly and accurately describe the radiation characteristics of the device under test.

         

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