Application of multibranch linear–linear basis function for multiscale dielectric targets simulation

Abstract Here, the multibranch linear–linear basis function (MB‐LL) is applied to the Poggio–Miller–Chang–Harrington–Wu–Tsai equation for calculating the scattering problem of multi‐scale dielectric targets. The MB‐LL basis function replaces the positive and negative triangles of the traditional lin...

Full description

Bibliographic Details
Main Authors: Yu Wang, Yu‐jia Zou, Xiaojie Dang, Ming‐da Zhu, Xun‐wang Zhao, Yu Zhang
Format: Article
Language:English
Published: Wiley 2024-02-01
Series:Electronics Letters
Subjects:
Online Access:https://doi.org/10.1049/ell2.13096
Description
Summary:Abstract Here, the multibranch linear–linear basis function (MB‐LL) is applied to the Poggio–Miller–Chang–Harrington–Wu–Tsai equation for calculating the scattering problem of multi‐scale dielectric targets. The MB‐LL basis function replaces the positive and negative triangles of the traditional linear–linear basis function (LL) with multiple branches, so it can be used at the junction of the meshes of different size. By using the MB‐LL basis function, we can easily divide the calculation region into several non‐overlapping regions, which is very suitable for the simulation of multiscale targets. At the same time, the MB‐LL basis function inherits the properties of the LL basis function, which is more accurate than the multibranch Rao–Wilton–Glisson (MB‐RWG) basis function. Numerical examples demonstrate the advantages of the proposed method.
ISSN:0013-5194
1350-911X