## Abstract The hybrid volume‐surface integral equation approach is proposed to analyze the transmission and reflection characteristics of finite and curved frequency‐selective surfaces structures. The surface current and electric flux density are expanded by surface RWG and volume SWG basis functi
Analysis and design of band-pass frequency-selective surfaces using the FEM CAD tool
✍ Scribed by P. T. Teo; K. S. Lee; C. K. Lee
- Publisher
- John Wiley and Sons
- Year
- 2004
- Tongue
- English
- Weight
- 453 KB
- Volume
- 14
- Category
- Article
- ISSN
- 1096-4290
No coin nor oath required. For personal study only.
✦ Synopsis
Three-dimensional (3D) full-wave analysis and design of bandpass frequencyselective surfaces (FSSs) is presented. By using the unique features of a unit cell and the periodic boundary conditions, infinite FSSs can be simulated. Wave propagation through FSSs, which is otherwise difficult to quantify, can be visualised by using a commercial CAD tool. The creation of the simulation model, interpretation and analysis of the outcome, and comparison with experimental results are presented for the square-slot and the square-loopslot band-pass FSS.
📜 SIMILAR VOLUMES
## Abstract In practical applications, frequency‐selective surfaces (FSSs) are finite, and sometimes even curved. In this paper, we present a hybrid volume‐surface integral‐equation approach to analyze the transmission and reflection characteristics of finite and curved FFS structures. The hybrid i
The dyadic Green's function of frequency-selective surfaces (FSSs) on an anisotropic layer is determined using the Hertz vector-potential method. The structure analyzed is composed by a periodic array of conducting patch elements. Three different patch geometries are considered. The results for the