返回
A Novel FDTD Mesh Generation Method Based on Itself Framework
DOI:10.1109/LAWP.2024.3476117.png)
摘要
En 中文
A novel mesh generation scheme for the finite-difference time-domain (FDTD) method is proposed in this letter. Whereby the FDTD procedure itself, the unstructured mesh, which uses triangular patches to describe the model surface, could be readily transformed into the Yee cells. First, a random filling method is used to generate the Yee cells on the model surface. Second, using a voltage source as the excitation, the electromagnetic field distribution in space can be calculated using the FDTD method. This calculation is performed with the model surface and boundaries set as perfect electric conductors. Finally, the whole region can be divided into two parts: one is full of electromagnetic energy, which is an external region of the model, and the other is the internal region of the model. The proposed method is simple to implement while keeping a sound accuracy. Two examples are taken to show the accuracy and efficiency of the proposed method. It can be seen that the proposed method is less affected by the number of triangular patches and is almost only related to the number of Yee cells. So the proposed method has more advantages in calculating large complex models.
Keyword:
Finite difference methods
Time-domain analysis
Mesh generation
Filling
Computational modeling
Electromagnetics
Accuracy
Surface treatment
Metals
Geometry
Finite-difference time-domain (FDTD)
mesh generation scheme
unstructured mesh
期刊
IF:
4.8
论文数:
1.0W
被引数:
2.8W
机构
暂无机构信息
引用论文
A Conformal mesh-generating technique for the Conformal finite-difference time-domain (CFDTD) method
Synthesis of a Ag/rGO nanocomposite using Bos taurus indicus urine for nitroarene reduction and biological activity
RSC Advances
IF0
A Fourier Transform Infrared Spectroscopic Based Biofilm Characterization Technique and Its Use to Show the Effect of Copper-Charged Polypropylene Feed Spacers in Biofouling Control基于傅里叶变换红外光谱的生物膜表征技术及其在展示铜负载聚丙烯进料隔栅对生物污染控制效果中的应用
High-Accurate Non-Uniform Grids for System-Combined ADI-FDTD Method in Near-Field Scattering With Proper CFL Factor
IEEE ACCESS
IF3.6
没有更多内容

