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chap7_9.m

%Kalman filter %x=Ax+B(u+w(k)); %y=Cx+D+v(k) clear all; close all; ts=0.001; M=3000; %Continuous Plant a=25;b=133; sys=tf(b,[1,a,0]); dsys=c2d(sys,ts,'z'); [num,den]=tfdata(dsys,'v');

closepsat.m

% CLOSEPSAT clear all PSAT global variables from workspace % % CLOSEPSAT % % Author: Federico Milano % Date: 22-Feb-2004 % Version: 1.0.0 % % E-mail: fmilano@thunderbox.uwaterloo.

kalman.cpp

#include "cv.h" #include "highgui.h" #include int main(int argc, char** argv) { /* A matrix data */ const float A[] = { 1, 1, 0, 1 }; IplImage* img = cvCreateImage( cvSize(500,5

chap7_11.m

%Discrete Kalman filter for PID control %Reference kalman_2rank.m %x=Ax+B(u+w(k)); %y=Cx+D+v(k) clear all; close all; ts=0.001; %Continuous Plant a=25;b=133; sys=tf(b,[1,a,0]); dsys=c2d(sy

chap7_9.m

%Kalman filter %x=Ax+B(u+w(k)); %y=Cx+D+v(k) clear all; close all; ts=0.001; M=3000; %Continuous Plant a=25;b=133; sys=tf(b,[1,a,0]); dsys=c2d(sys,ts,'z'); [num,den]=tfdata(dsys,'v');

chap7_10f.m

%Discrete Kalman filter %x=Ax+B(u+w(k)); %y=Cx+D+v(k) function [u]=kalman(u1,u2,u3) persistent A B C D Q R P x yv=u2; if u3==0 x=zeros(2,1); ts=0.001; a=25;b=133; sys=tf(b,[1,a

chap7_10.m

%Discrete Kalman filter for PID control %Reference kalman_2rank.m %x=Ax+B(u+w(k)); %y=Cx+D+v(k) clear all; close all; ts=0.001; %Continuous Plant a=25;b=133; sys=tf(b,[1,a,0]); dsys=c2d(sy

chap7_8.m

%Kalman filter %x=Ax+B(u+w(k)); %y=Cx+D+v(k) clear all; close all; ts=0.001; M=3000; %Continuous Plant a=25;b=133; sys=tf(b,[1,a,0]); dsys=c2d(sys,ts,'z'); [num,den]=tfdata(dsys,'v');

utf_smooth1.m

%UTF_SMOOTH1 Smoother based on two unscented Kalman filters % % Syntax: % [M,P] = UTF_SMOOTH1(M,P,Y,[ia,Q,aparam,h,R,hparam,,alpha,beta,kappa,mat,same_p_a,same_p_h]) % % In: % M - NxK matrix of K

reentry_h.m

% Measurement model function for reentry demo. % % Copyright (C) 2005-2006 Simo S鋜kk