#include <fstream>
#include <iostream>
#include <visp3/core/vpLinearKalmanFilterInstantiation.h>
typedef enum
{
Position,
Velocity
} vpMeasureType;
int main()
{
#ifdef ENABLE_VISP_NAMESPACE
#endif
try {
unsigned int nsignal = 2;
unsigned int niter = 200;
unsigned int size_state_vector = 2 * nsignal;
unsigned int size_measure_vector = 1 * nsignal;
vpMeasureType measure_t = Position;
std::string filename = "/tmp/log.dat";
std::ofstream flog(filename.c_str());
for (unsigned int signal = 0; signal < nsignal; signal++)
sigma_measure = 0.000001;
switch (measure_t) {
case Velocity:
for (unsigned int signal = 0; signal < nsignal; signal++) {
sigma_state[2 * signal] = 0.;
sigma_state[2 * signal + 1] = 0.000001;
}
break;
case Position:
for (unsigned int signal = 0; signal < nsignal; signal++) {
sigma_state[2 * signal] = 0.000001;
sigma_state[2 * signal + 1] = 0;
}
break;
}
for (unsigned int signal = 0; signal < nsignal; signal++) {
measure[signal] = 3 + 2 * signal;
}
double rho = 0.5;
double dummy = 0;
switch (measure_t) {
case Velocity:
kalman.initFilter(nsignal, sigma_state, sigma_measure, rho, dummy);
break;
case Position:
kalman.initFilter(nsignal, sigma_state, sigma_measure, dummy, dt);
break;
}
for (
unsigned int iter = 0;
iter <= niter;
iter++) {
std::cout <<
"-------- iter " <<
iter <<
" ------------" << std::endl;
for (unsigned int signal = 0; signal < nsignal; signal++) {
measure[signal] = 3 + 2 * signal + 0.3 * sin(
vpMath::rad(360. / niter * iter));
}
std::cout << "measure : " << measure.t() << std::endl;
flog << measure.t();
flog <<
kalman.Xest.t() << std::endl;
std::cout <<
"Xest: " <<
kalman.Xest.t() << std::endl;
}
flog.close();
return EXIT_SUCCESS;
}
std::cout <<
"Catch an exception: " <<
e << std::endl;
return EXIT_FAILURE;
}
}
Implementation of column vector and the associated operations.
error that can be emitted by ViSP classes.
This class provides an implementation of some specific linear Kalman filters.
@ stateConstVel_MeasurePos
@ stateConstVelWithColoredNoise_MeasureVel
static double rad(double deg)