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theta

  • This program plot the Bistatic Radar Cross Section of a dielectric sphere as a function of theta.(An

    This program plot the Bistatic Radar Cross Section of a dielectric sphere as a function of theta.(Analytic Method)

    标签: dielectric Bistatic function Section

    上传时间: 2017-03-30

    上传用户:凤临西北

  • Describes how to find the theta value in CPFSK

    Describes how to find the theta value in CPFSK

    标签: Describes CPFSK theta value

    上传时间: 2017-06-09

    上传用户:qlpqlq

  • #define PI 3.1415926 double angle=(double)theta/10.0*PI/180.0 double anglecos=cos(angle) dou

    #define PI 3.1415926 double angle=(double)theta/10.0*PI/180.0 double anglecos=cos(angle) double anglesin=sin(angle)

    标签: double angle 3.1415926 anglecos

    上传时间: 2014-01-08

    上传用户:181992417

  • The cart with an inverted pendulum, shown below, is "bumped" with an impulse force, F. Determine th

    The cart with an inverted pendulum, shown below, is "bumped" with an impulse force, F. Determine the dynamic equations of motion for the system, and lin earize about the pendulum s angle, theta = Pi (in other words, assume that p endulum does not move more than a few degrees away from the vertical, chosen to be at an angle of Pi). Find a controller to satisfy all of the design re quirements given below.

    标签: F. with Determine inverted

    上传时间: 2014-01-17

    上传用户:miaochun888

  • 在命令窗输入如下内容就得到图形了: [t,x]=ode45( godhua ,[0,10],[0,0,0,1]) subplot(131) plot(t,x(:,4)) xlabel( t )

    在命令窗输入如下内容就得到图形了: [t,x]=ode45( godhua ,[0,10],[0,0,0,1]) subplot(131) plot(t,x(:,4)) xlabel( t ) ylabel( y ) subplot(132) plot(t,x(:,1)) xlabel( t ) ylabel( v ) subplot(133) plot(t,x(:,2)) xlabel( t ) ylabel( \theta )

    标签: subplot godhua xlabel plot

    上传时间: 2013-12-25

    上传用户:15736969615

  • PlotSphereIntensity(azimuth, elevation) PlotSphereIntensity(azimuth, elevation, intensity) h = Plo

    PlotSphereIntensity(azimuth, elevation) PlotSphereIntensity(azimuth, elevation, intensity) h = PlotSphereIntensity(...) Plots the intensity (as color) of a number of points on a unit sphere. Input: azimuth (phi), in degrees elevation (theta), in degrees intensity (optional, if not provided, a green sphere is produced) All inputs must be vectors or matrices of the same size. Data does not have to be evenly spaced. When there aren t enough points to draw a smooth sphere, additional points (with color) are interpolated. Output: h - a handle to the patch object The axes are also plotted: positive x axis is red positive y axis is green positive z axis is blue

    标签: PlotSphereIntensity elevation azimuth intensity

    上传时间: 2014-01-15

    上传用户:ruan2570406

  • %radon transform clear all % N=800 n=1:N fs=200 t=n/fs x1=exp(j*2*pi*(5*t+0.5*5*t.^2

    %radon transform clear all % N=800 n=1:N fs=200 t=n/fs x1=exp(j*2*pi*(5*t+0.5*5*t.^2)) x2=exp(j*2*pi*(5*t+0.5*15*t.^2)) x=x1+x2 %N=length(x) % ambifunb(x ) %*****************************************RAT naf=ambifunb(x) htl(abs(naf)) % [wh,rho,theta]=htl(abs(naf)) colormap([0,0,0]) % xlabel( 极半径 ) % ylabel( 角度 ) %**************************************%找出峰值点的坐标,计算初始频率和调频斜率(正确) %找出峰值点的坐标 b=max(max(wh)) [u,a]=find(wh>=0.8*b)

    标签: transform radon clear fs

    上传时间: 2014-10-27

    上传用户:Yukiseop

  • This function is used to evaluate the max height and the max distance of a projectile and plot th

    This function is used to evaluate the max height and the max distance of a projectile and plot the trajectory. Inputs v0 : The initial velocity in m/s theta: The angle at which the projectile is fired in degrees Outputs hmax : The maximum hieght in m dmax : The maximum distance in m

    标签: projectile and the max

    上传时间: 2013-12-22

    上传用户:dongbaobao

  • Matlab 画三维立体图形

    Matlab 画三维立体图形 The aim of geom3d library is to handle and visualize 3D geometric primitives such as points, lines, planes, polyhedra... It provides low-level functions for manipulating 3D geometric primitives, making easier the development of more complex geometric algorithms.      Some features of the library are:   - creation of various shapes (3D points, 3D lines, planes, polyhedra...)     through an intuitive syntax.      Ex: createPlane(p1, p2, p3) to create a plane through 3 points.     - derivation of new shapes: intersection between 2 planes, intersection between     a plane and a line, between a sphere and a line...   - functions for 3D polygons and polyhedra. Polyhedra use classical vertex-faces     arrays (face array contain indices of vertices), and support faces with any     number of vertices. Some basic models are provided (createOctaedron,     createCubeoctaedron...), as well as some computation (like faceNormal or     centroid)      - manipulation of planar transformation. Ex.:     ROT = createRotationOx(theta);     P2  = transformPoint3d(P1, ROT);     - direct drawing of shapes with specialized functions. Clipping is performed      automatically for infinite shapes such as lines or rays. Ex:     drawPoint3d([50 50 25; 20 70 10], 'ro');    % draw some points     drawLine3d([X0 Y0 Z0 DX DY DZ]);            % clip and draw straight line Some functions require the geom2d package.       Additional help is provided in geom3d/Contents.m file, as well as summary files     like 'points3d.m' or 'lines3d.m'.

    标签: Matlab 画三维立体图形

    上传时间: 2015-11-02

    上传用户:A1321