搜索资源列表
Disk
- This fortran source codes find the scattering and RCS of a plane wave by conductor disks
PBGBand
- 光子晶体的能带图计算,其实质就是电磁本征值(复矢量场)的问题。利用平面波展开磁场,引入f(r)=1/eps(r),再利用倒格矢G将f(r)展开,将两者代入光子晶体的支配方程,最后得到一个平面波展开的方法的线性方程组,最终转化为求解其特征值向量的问题。-Energy band diagram of the photonic crystal, its essence is the electromagnetic eigenvalues (complex vector fi
PWEfor1D
- 用平面波展开法计算一维光子晶体的能带结构,程序语言非常精炼-Plane wave expansion calculation of one-dimensional photonic crystal band structure, programming language is very refined
reflection
- 计算诺特方程求解平面纵波入射到水平界面时的纵波反射系数与转换波反射系数 matlab图形化界面,输入上下两层介质的纵横波速度与密度即可,使用方便-Knott equations to calculate longitudinal wave reflection coefficients and converted wave reflection coefficient matlab graphical interface, enter the upper and lower layer
yenjen
- Much posture, multi-angle, have different light, Computation Method D phononic bandgap plane wave, Can realize the two-dimensional data clustering.
et834
- Using common plane wave expansion method, Use serial programming examples matlab GUI implementation, Can be widely used in data analysis and forecast data.
qao_ci73
- Classic GLCM texture calculation method, Gabor wavelet transform and PCA face recognition code, Using common plane wave expansion method.
FDTD外场激励下单导体首末端感应电压计算
- 这个程序使用了时域有限差分法(FDTD),考虑外界均匀平面波激励双导体线时,用于计算导线首末端的感应电压,程序中可以通过改变参数,得到不同因素对感应电压的影响。(This program uses finite-difference time-domain (FDTD) methods to calculate the induced voltage at the head and the end of the conductor when the uniform plane wave is u
Q--Anisotropic-Q-
- 各向异性q模拟, 适应于地震资料处理反演实验(U-58 Ani Q- Anisotropic Q modeling Yaping Zhu May 2006 Confidential to the Consortium until 1 Aug 2009 Contents of this directory are Matlab packages to perform the following tasks. HomoPlaneAttVTI, Yaping Zhu, co
固液声子晶体的能带结构
- 声子晶体,带隙,固+液二元结构,声子晶体的能带结构计算(phononic crystals, band gap, two element structure of Solid & liquid, the bandgap structures calculation by Matlab with Plane wave expansion method)
二维声子晶体XY模式(三氧化二铝和环氧树脂)
- 用平面波展开法计算二维固-固型声子晶体的能带结构(Calculation of Energy Band Structure of Two-Dimensional Solid-Solid Phononic Crystals by Plane Wave Expansion Method)