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fdtd-pml
- fdtd 时域有限差分法pml吸收边界条件 实现-fdtd FDTD method achieved pml absorbing boundary condition
PLM
- 包含一个一维和二维声波模拟,边界条件为PLM完美匹配吸收边界,主要是供学习边界吸收的同行借鉴-Contains a one-dimensional and two-dimensional acoustic simulation, boundary conditions for a perfect match PLM absorbing boundary, primarily for peer learning reference boundary absorption
67506284bb
- 有限差分二阶二维声波方程加吸收边界变速剖面研究-Two-dimensional finite-difference second-order wave equation with absorbing boundary speed profile of
dancengwobianjie-zhuyaobufen
- 单层无边界吸收(只含主要部分) 的c语言编写程序 有限差分边界条件 波动方程的求解-dan ceng wu bian jie , you xian cha fen,bo dong fang cheng
dancengwobianjie
- 单层有边界吸收 有限差分法解波动方程的边界问题-dan ceng you bian jie ,you xian cha fen bo dong fang cheng
3d-FDTD-UPML__3D
- 三维时域有限差分法结合UPML吸收边界条件模拟程序-Three-dimensional finite-difference time-domain method combined with UPML absorbing boundary conditions
cpml
- 三维FDTD,采用CPML吸收边界,高斯脉冲激励通过总场连接边界加入-three dimension FDTD,cpmlAbsorbing boundary connecting the boundary plus incentive
aaa
- 对于声波模拟地震,采用两种吸收边界进行边界处理。-Sound waves to simulated seismic, by using two kinds of absorbing boundary for boundary treatment.
dizhenbo
- 对各向同性均匀介质,进行模拟。并利用弹性边界吸收。-For isotropic uneven medium, modeling. And by using elastic boundary absorption.
FeatureExtraction-(1)
- 绿色植物具有明显的光谱反射特征,而这种特征与植被的发育、健康状况以及生长条件密切相关。传统的宽波段、多光谱遥感数据对于植被的研究仅限于一般性的红光吸收特征和近红外的反射特征[1-3],以及中红外的水吸收特征[4-6]。高光谱遥感通过对不同类型植被的生物物理化学成分含量的估算能获得较为理想的植被生态学信息,并在提取植被信息中得到大量的应用和研究[7-10]。高光谱遥感器的出现为改进现有的分类算法,进一步提高植被分类精度提供了可能。高光谱遥感技术已经应用于湿地分类、边界、水体、湿地植被和湿地生境因子
cpml
- 三维FDTD,采用CPML吸收边界,高斯脉冲激励通过总场连接边界加入-three dimension FDTD,cpmlAbsorbing boundary connecting the boundary plus incentive
dianyuan
- fdtd相关程序,可做基础学习,三维PML吸收边界-fdtd procedures do based learning, 3D PML absorbing boundary
dizhenbo
- 对各向同性均匀介质,进行模拟。并利用弹性边界吸收。-For isotropic uneven medium, modeling. And by using elastic boundary absorption.
colrsnverysquare
- 二维fdtd,mur吸收边界,方柱的散射,不错的 很好(Two-dimensional FDTD, the mur absorbing boundary, square column scattering, good is very good)
Xhq-MUR
- 二维TE波的FDTD的实现,采用MUR吸收边界条件,不错的(The realization of the 2-d TE wave of FDTD, USES the MUR absorbing boundary conditions, good)
