搜索资源列表
FDTD
- 一种实现电磁波的FDTD仿真模拟的源程序代码
3dPML
- 带有完美匹配层的三维FDTD仿真,用于电磁波和光学仿真
diancibo2
- 电磁场与电磁波配套答案详解,有助于电磁场与电磁波的学习
experiment2
- Intel8253应用——发声控制 Intel8253通道工作过程是:按本通道中给定的初值n,对输入时钟信号频率f进行n分频,输出频率为F的分频信号,即F=f/n. 从而在通道输出引线周围产生一种与频率F波形对应的电磁波,若用此电磁波控制一扬声器,则可听到与该电磁波对应的声音。
cpml.cpp.txt
- pml边界的3维fdtd程序,计算电磁波- 3-D FDTD code with CPML absorbing boundary conditions
mie_w_src.tar
- Mie散射程序(.w后缀),内含相关函数,主要计算粒子的电磁散射,可用于光流场、电磁波的计算。-Mie scattering program (. W suffix), containing correlation function, the main calculation of electromagnetic scattering particles can be used for optical flow field, electromagnetic calculations.
3dpml
- 计算模拟3维电磁波传播的FDTD源程序,采用的边界是PML吸收边界。-Numerical simulation of three-dimensional electromagnetic wave propagation FDTD source, using the PML absorbing boundary is the boundary.
fdtd
- fdtd时域有限差分法基于c++的实现,可以有效模拟地质雷达的电磁波-fdtd FDTD method is based on the realization of c++, can effectively simulate the electromagnetic GPR
AR
- matlab环境下,计算圆极化电磁波轴比的程序-calculated circularly polarized electromagnetic wave axis than the program Matlab environment
winxm
- 时域有限差分方法,一维电磁波在色散介质中的传播和散射3D分析方法,fdtd-Finite difference time domain method, one-dimensional propagation and scattering of electromagnetic waves in dispersive media 3D analysis methods, fdtd
chaosongchidiedai
- 使用MATLAB进行模拟超松弛迭代法仿真,电磁场与电磁波实验。-Using MATLAB simulation SOR method simulation, electromagnetic field and wave experiments.
jiandandiedai
- 电磁场与电磁波实验,使用MATLAB模拟简单迭代法-Electromagnetic field and wave experiment using MATLAB simulation simple iterative method
fdtd_14
- 电磁波在自由空间碰到有损介质的一维FDTD仿真模拟-Electromagnetic waves in free space across lossy dielectric one-dimensional FDTD simulation
PcControl
- 基于labview精确地控制超光谱光谱,实现其电磁波频率到波长的快速精确变换-Labview precise control of hyperspectral spectrum, electromagnetic frequencies to achieve its fast and accurate wavelength conversion based on
gaopinzhong
- matlab编写 wkb计算电磁波通过等离子体衰减-a matlab program to compute the attenuation of electromagnetic wave
fdtd_32
- 时域有限差分方法计算电磁波在二维真空中的传播特性,激励源为正弦波,PML边界-Finite difference time domain method to calculate the transmission characteristics of electromagnetic wave in 2 d vacuum, excitation source of sine wave, the PML boundary