Accurate and Numerically Stable FDTD Modeling of Human Skin Tissues in THz Band

  • 박재선
  • Baek, Jae-Woo
  • Jung, Kyung-Young
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초록

We propose finite-difference time-domain (FDTD) modeling suitable for healthy skin, basal cell carcinoma, dysplastic pigmentary nevus, and non-dysplastic pigmentary nevus in the frequency range of 0.25 THz to 1.05 THz. Toward this purpose, we utilize the complex-conjugate pole-residue (CCPR) dispersion model, because it is very simple to extract the accurate CCPR coefficients using the powerful vector fitting tool. In the FDTD method, it is of great importance to check the numerical stability conditions. If the coefficients extracted through the vector fitting tool do not satisfy the numerical stability conditions, the particle swarm optimization (PSO) algorithm is employed to obtain the accurate and numerically stable coefficients. Numerical examples are provided to validate our proposed FDTD modeling.

키워드

Time-domain analysisNumerical modelsFinite difference methodsDispersionSkinNumerical stabilitySkin cancerDispersion modeldispersive mediafinite-difference time-domain (FDTD) methodhuman skin tissuesterahertz (THz)DIFFERENCE TIME-DOMAINPERFECTLY MATCHED LAYERBASAL-CELL CARCINOMADISPERSIVE MEDIAWAVE-GUIDESEX-VIVOSTABILITY
제목
Accurate and Numerically Stable FDTD Modeling of Human Skin Tissues in THz Band
저자
박재선Baek, Jae-WooJung, Kyung-Young
DOI
10.1109/ACCESS.2022.3168160
발행일
2022-04
유형
Article
저널명
IEEE Access
10
페이지
41260 ~ 41266