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MATLAB_Rainfall_radar_echo_model_for_measuring_rai
- 本程序为星载降水雷达卫星测量地面降雨时,回波的归一化雷达散射截面图。 主程序为FiSAR,其他两个程序为嵌套的函数。-This procedure for the spaceborne precipitation radar satellite measurements of rainfall on the ground, the echoes of the normalized radar cross section diagram. The main program for the Fi
MOM RCS CYLINDER
- 利用矩量法计算无限长度的圆柱的雷达散射截面-Unlimited use of moment method to calculate the length of the cylinder RCS
zhufneliang
- 目标的雷达散射截面(RCS)包含了丰富的目标类别信息,如何有效利用目标RCS特征对空间目标的雷 达识别具有重要意义. 文中提取中心矩作为特征向量,采用主分量分析( PCA)进一步进行特征压缩,利用支撑矢 量-Target radar cross section (RCS) contains a wealth of objective categories of information, how the effective use of target RCS characteristi
FDTD
- 用c++语言,编写了基于FDTD的三维散射体雷达散射截面的计算程序。程序注释清楚。稍微改动必要的数据就可以直接使用。已经多次验证了程序的正确性。-Using c++ language, compiled based on three-dimensional FDTD radar cross section scattering calculation program. Program notes clearly. Slightly change the necessary data can be
FDTD
- 用c++语言,编写了基于FDTD的三维散射体雷达散射截面的计算程序。程序注释清楚。稍微改动必要的数据就可以直接使用。已经多次验证了程序的正确性。-Using c++ language, compiled based on three-dimensional FDTD radar cross section scattering calculation program. Program notes clearly. Slightly change the necessary data can be
RCS
- 本程序是用来计算导体球的电磁散射的雷达截面问题的,使用的是由MATLAB编写的-This procedure is used to calculate the electromagnetic scattering problem of radar cross section of the conductor ball, the use of MATLAB
myrcsfj
- 利用近远场外推做圆柱体雷达散射截面,并用fdtd方法。-Make use of the near and far field extrapolation cylinder RCS and use fdtd method.
RADAR_simulation
- 这是一个早期预警雷达的模拟。模拟生成随机目标(坐标、速度、加速度和雷达散射截面(RCS))。(It is a simulation of an early warning radar. The simulation generates random targets (coordinates, velocity, acceleration & Radar Cross Section (RCS)).)
主动电磁法
- TE波照射无限长导体柱求雷达散射截面、TM波照射无限长导体柱求雷达散射截面(TE wave is used to irradiate an infinite conductor cylinder, radar cross section and TM wave are used to obtain the radar cross section of an infinite conductor cylinder)
models.rf.radar_cross_section
- 用comsol来求解雷达散射截面,麦克斯韦方程的重要应用(Using comsol to solve the radar cross section, the important application of Maxwell's equation)