搜索资源列表
D3squTE
- 利用有限元法,用comsol和matlab软件计算光子晶体三维带隙-With finite element method, using comsol and matlab software to compute three-dimensional photonic crystals band gap
1m
- 二维光子晶体禁带的遗传优化算法Photonic Band Gap Genetic Algorithm-Photonic Band Gap Genetic Algorithm
wxdragon
- 用于分子/晶体图形显示和编写输入文件的图形界面程序 可以显示Gaussian 92/94/98(结构,电荷,结构优化,振动,轨道,cube文件) ADF(结构,电荷,结构优化,振动) Turbomole(结构,电荷,振动) Gamess-UK(结构,电荷,振动) VASP(结构,电荷,mdsim,ELF密度,电荷密度,LOCPOT密度,DOS) LMTO(结构,DOS-、BNDS-、COHP特性,RHO和ELF文件) CPMD(结构和密度文件) MPQC(结构,电荷)
tingerfdtd-0.1.10(win32)
- Tinger FDTD 是一款基于 FDTD 算法的二维全矢量电磁场数值模拟软件,可应用于光电、微波、电磁等器件及一般光学器件的仿真、设计优化和教学,也可用于光子晶体和特异材料等现代光子学的研究。利用该软件的数值模拟功能,弥补了无法进行实验验证的缺陷。该软件具有广泛的平台通用性,可以在 Windows、linux、嵌入式 Linux 等平台中运行。并具有友好的图形化界面,为软件使用者提供方便。Tinger FDTD完美支持简体中文和英文,并可以动态切换语言。 -Tinger FDTD algor
fdtd_D1_tm_pml
- 计算一维光子晶体的投射和反射,TM模式,PML边界条件,总场散射场模式,高斯脉冲,并已优化-One-dimensional photonic crystal projection and reflection, PML boundary conditions, the total field scattered field model, Gaussian pulse, and has been optimized
Photonic-Band-Gap-Genetic-Algorithm
- 二维光子晶体禁带的遗传优化算法.在平面波展开法的基础上,使用遗传算法寻找具有最大光子禁带的二维光子晶体结构-Photonic Band Gap Genetic Algorithm
PBG
- 二维光子晶体禁带的遗传优化算法,在平面波展开法的基础上,使用遗传算法寻找具有最大光子禁带的二维光子晶体结构-Two-dimensional photonic crystal band gap genetic algorithm, in the plane wave expansion method based on the use of genetic algorithms to find a maximum two-dimensional photonic band structure of
pso
- 模拟退火算法——组合优化 模拟退火算法主要用于解决组和优化问题,它是模拟物理中晶体物质的退火过程而开发的一种优化算法。在对固体物质进行模拟退火处理时,通常先将它加温熔化,使其中的粒子可自由运动,然后随着温度的逐渐下降,粒子也逐渐形成了低能态的晶格。若在凝结点附近的温度下降速率足够慢,则固体物质一定会形成最低能态的基态。 对于组合优化问题来说,它也有这样的类似过程。组合优化问题解空间中的每一点都代表一个具有不同目标函数值的解。所谓优化,就是在解空间中寻找目标函数最小(大)解的过程。若把目标
s3jj
- 基于一维非线性光子晶体的光学二极管优化设计.-Based on one-dimensional nonlinear photonic crystal optical diode design optimization.
FDTD3D_Main
- 二维光子晶体禁带的遗传优化算法MATLAB源码-Two-dimensional photonic crystal band gap genetic optimization algorithm MATLAB source
three-plate-PSO
- 在三波片式电光晶体结构中利用粒子群优化算法进行模拟的matlab代码-In the three-wave-piece electro-optic crystal structure using particle swarm optimization algorithm simulation matlab code
PBGGA
- 利用遗传优化算法计算宽带隙2维光子晶体结构-Using genetic optimization algorithm two-dimensional photonic band gap crystal structure
photonic-crystal-negative-refraction
- 提出并优化了由单排渐变介质波导构成的二维空气孔型光子晶体负折射平板透镜表面的减反层,改善了成像 质量-Proposed and optimized by a single row of two-dimensional gradient dielectric waveguide consisting of negative refraction of air hole photonic crystal slab lens surface anti-reflection layer, impro
kenyai
- LCMV优化设计阵列处理信号,一个计算声子晶体结构的一维传递矩阵法,采用热核构造权重。- LCMV optimization design array signal processing, A one-dimensional transfer matrix method to calculate the phonon crystal structure, Thermonuclear using weighting factor.
fiufang_v80
- 用平面波展开法计算二维声子晶体带隙,对HARQ系统的吞吐量分析,算法优化非常好,几乎没有循环。- Computation Method D phononic bandgap plane wave, HARQ throughput analysis of the system, Algorithm optimization is very good, almost no circulation.
meitou_v19
- 遗传算法无功优化,计算一维光子晶体的透射特性和反射特性,数学方法是部分子空间法。- Genetic algorithm based reactive power optimization, Calculated transmission characteristics and reflection characteristics of the one-dimensional photonic crystals, Mathematics is part of the subspace.
ningmiu
- 算法优化非常好,几乎没有循环,二维声子晶体FDTD方法计算禁带宽度的例子,利用matlab针对图像进行马氏距离计算 。- Algorithm optimization is very good, almost no circulation, Dimensional phononic crystals FDTD method calculation examples band gap, Using matlab to calculate the Mahalanobis distance for t
bieting
- 一个计算声子晶体结构的一维传递矩阵法,自写曲率计算函数 ,遗传算法无功优化。- A one-dimensional transfer matrix method to calculate the phonon crystal structure, Since writing the curvature calculation function, Genetic algorithm based reactive power optimization.
ginghiu_V0.4
- 一个计算声子晶体结构的一维传递矩阵法,包含优化类的几个简单示例程序,有循环检测,周期性检测。- A one-dimensional transfer matrix method to calculate the phonon crystal structure, Optimization class contains several simple sample programs, There are cycle detection, periodic testing.
lengben_v87
- 用平面波展开法计算二维声子晶体带隙,算法优化非常好,几乎没有循环,实现典型相关分析。- Computation Method D phononic bandgap plane wave, Algorithm optimization is very good, almost no circulation, Achieve canonical correlation analysis.