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Description: 解决麦克斯韦的matlab源文件,简洁而且实用
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Size: 502012 |
Author: liubin |
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Description: This a very simple Yee algorithm 3D FDTD code in C implementing the free space form of Maxwell s equations on a Cartesian grid. There are no internal materials or geometry. The code as delivered simulates an idealized rectangular waveguide by treating the interior of the mesh as free space/air and enforcing PEC (Perfect Electric Conductor) conditions on the faces of the mesh.-This a very simple algorithm 3D Yee FDTD code in C implementing the free space form of Maxwell's equations s on a Cartesian grid. There are no materials or internal geometry. The code as delivered simulates an idealized rectangular effort at by treating the interior of the mesh as free space/air and enforcing PEC (Perfect Electric Conductor) conditions on the faces of the mesh.
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Size: 9216 |
Author: 吴婷 |
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Description: 很好用的利用吸收边界条件解决二维maxwell方程的时域有限差分法matlab源程序- The very easy to use use absorbs boundary condition solution
two-dimensional maxwell the equation the time domain finite difference
method matlab source program
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Size: 4096 |
Author: 谭仁兵 |
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Description: 找到了本征模式,运用matlab语言编写的程序,对科技工作者有很有帮助,可以解决maxwell方程-found a pattern of the levy, using the Matlab language procedures, right technology workers are helpful, maxwell equation can be solved
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Size: 9216 |
Author: 郑乾 |
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Description: 解决麦克斯韦的matlab源文件,简洁而且实用-Matlab solve Maxwell
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Size: 501760 |
Author: liubin |
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Description: This MATLAB M-file implements the finite-difference time-domain solution of Maxwell s curl equations over a one-dimensional space lattice comprised of uniform grid cells.
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Size: 2048 |
Author: 蓝宇 |
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Description: 任何几何形状的导体或介质的麦克斯韦方程的时域有限差分代码-This a program solves Maxwell Equations for arbitrary geometries
of objects with different conductivity and permitivity using the
FDTD algorithm. Only first oder absorbing boundary conditions are
applied. It is possible to create mpeg-movies.
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Size: 427008 |
Author: 邹长林 |
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Description: 3D 复杂的FDTD的MATLAB程序,同时计算运行时间 PML吸收边界-This MATLAB M-file implements the finite-difference time-domain
solution of Maxwell s curl equations over a three-dimensional
Cartesian space lattice comprised of uniform cubic grid cells.
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Size: 49152 |
Author: Ren |
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Description: FDTD解Maxwell旋度方程,三维直角坐标空间格子内包含均匀三次单元格-finite-difference time-domain solution of Maxwell s curl equations over a three-dimensional Cartesian space lattice comprised of uniform cubic grid cells.
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Size: 5120 |
Author: gym |
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Description: FDTD(时域有限差分法)算法的Matlab源程序-This MATLAB M-file implements the finite-difference time-domain
solution of Maxwell s curl equations over a three-dimensional
Cartesian space lattice comprised of uniform cubic grid cells.
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Size: 2048 |
Author: liuxc |
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Description: This MATLAB M-file implements the finite-difference time-domain solution of Maxwell s curl equations over a two-dimensional Cartesian space lattice comprised of uniform square grid cells.
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Size: 5120 |
Author: nano |
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Description: This MATLAB M-file implements the finite-difference time-domain solution of Maxwell s curl equations over a three-dimensional Cartesian space lattice comprised of uniform cubic grid cells.
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Size: 5120 |
Author: nano |
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Description: finite element method- ***********************************************************************
3-D FDTD code with PEC boundaries
***********************************************************************
Program author: Susan C. Hagness
Department of Electrical and Computer Engineering
University of Wisconsin-Madison
1415 Engineering Drive
Madison, WI 53706-1691
hagness@engr.wisc.edu
Copyright 2005
This MATLAB M-file implements the finite-difference time-domain
solution of Maxwell s curl equations over a three-dimensional
Cartesian space lattice comprised of uniform cubic grid cells.
Each unit cell within the Yee lattice contains electric field
components sampled along the edges of the cube and magnetic field
components normal to the faces of the cube (the dual of Fig. 3.1).
To illustrate t
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Size: 2048 |
Author: Hollis |
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Description: Matlab电磁波FDTD传输程序
模拟一天线发射电磁波在不同介质中的传播。-The Finite-difference time-domain (FDTD) method belongs in the general class of grid-based differential time-domain numerical modeling methods. The time-dependent Maxwell s equations (in partial differential form) are discretized using central-difference approximations to the space and time partial derivatives. The resulting finite-difference equations are solved in either software or hardware in a leapfrog manner: the electric field vector components in a volume of space are solved at a given instant in time then the magnetic field vector components in the same spatial volume are solved at the next instant in time and the process is repeated over and over again until the desired transient or steady-state electromagnetic field behavior is fully evolved.
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Size: 5120 |
Author: linxu |
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Description: 电喷摩托车发动机基本喷油量MAP图仿真.利用matlab对发动机的MAP图进行仿真-Motorcycle Engine simulation of the basic fuel injection quantity map MAP. Using matlab MAP map of the simulation engine
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Size: 277504 |
Author: chenlijie |
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Description: MATLAB in Maxwell speed distribution law teaching application-MATLAB in Maxwell speed distribution law teaching application
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Size: 168960 |
Author: 徐峥乾 |
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Description: maxwell equation simulations in matlab
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Size: 4096 |
Author: minaa |
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Description: This MATLAB M-file implements the finite-difference time-domain solution of Maxwell s curl equations over three-dimensional Cartesian space lattice comprised of uniform cubic grid cells.
To illustrate the algorithm, an air-filled rectangular cavity resonator is modeled. The length, width, and height of the cavity are 10.0 cm (x-direction), 4.8 cm (y-direction), and 2.0 cm (z-direction), respectively.-This MATLAB M-file implements the finite-difference time-domain solution of Maxwell' s curl equations over three-dimensional Cartesian space lattice comprised of uniform cubic grid cells. To illustrate the algorithm, an air-filled rectangular cavity resonator is modeled. The length, width, and height of the cavity are 10.0 cm (x-direction), 4.8 cm (y-direction), and 2.0 cm (z-direction), respectively.
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Size: 2048 |
Author: 双色 |
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Description: 时域有限差分法的Matlab仿真
将麦克斯韦旋度方程化为差分式的求解方法-FDTD method of Matlab simulation
The Maxwell s curl equations made into differential equation solving
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Size: 266240 |
Author: Sun Yitian |
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Description: 基于 Maxwell 的基本电磁场理论,根据导行电磁波得到矩形导波系统中 TM 波、TE 波的场分布方程, 并对传
播常数进行讨论,得到矩形波导中传输模式特性. 应用 MATLAB 计算金属矩形波导的传输模, 得到矩形波导中 TE、TM
模场分布. 研究结论对矩形波导设计提供参考.(ased on the basic electromagnetic field theory of Maxwell, the field distribution equation of TM wave and TE wave in rectangular guided wave system is obtained based on guided electromagnetic wave.
The transmission constants of the rectangular waveguide are discussed, and the transmission modes of the rectangular waveguide are calculated by MATLAB. The TE and TM in the rectangular waveguide are obtained.
The results of the study provide a reference for the design of rectangular waveguides.)
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Size: 1024 |
Author: ailili |
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