Files
matlab/master_slave_eval.m
jens 05650c370d - added
git-svn-id: http://moon:8086/svn/matlab/trunk@129 801c6759-fa7c-4059-a304-17956f83a07c
2020-08-09 11:07:18 +00:00

121 lines
2.6 KiB
Matlab

## Copyright (C) 2020 Jens
##
## This program is free software: you can redistribute it and/or modify it
## under the terms of the GNU General Public License as published by
## the Free Software Foundation, either version 3 of the License, or
## (at your option) any later version.
##
## This program is distributed in the hope that it will be useful, but
## WITHOUT ANY WARRANTY; without even the implied warranty of
## MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
## GNU General Public License for more details.
##
## You should have received a copy of the GNU General Public License
## along with this program. If not, see
## <https://www.gnu.org/licenses/>.
## -*- texinfo -*-
## @deftypefn {} {@var{retval} =} master_slave_eval (@var{input1}, @var{input2})
##
## @seealso{}
## @end deftypefn
## Author: Jens <jens@orion>
## Created: 2020-08-04
function retval = master_slave_eval (input1, input2)
N_cycles = 10
N_phases_per_cycle = 4
dN = 24
N = N_cycles*N_phases_per_cycle
k_jitter = 2;
# Create Master
xp = zeros(1, N_cycles*N_phases_per_cycle*dN);
xv = zeros(1, N_cycles*N_phases_per_cycle*dN);
phase = 0;
v = 0;
for n=0:N-1,
pos = max(1, n*dN + 1 + fix(0.5 + 2*k_jitter*randn()/sqrt(12)));
xp(pos) = phase;
xv(pos) = v + 1;
phase = mod(phase + 1, N_phases_per_cycle);
v = mod(v + 1, N_phases_per_cycle);
endfor
# Slave
k_upd = 0.5;
phi = 0;
dphi = 0;
last_n = 0;
last_xp = 0;
param_changed = 1;
_phi = [];
_dphi = [];
_err_phi = [];
_err_dphi = [];
err_phi = 0
err_dphi = 0
for n=1:length(xp)
yp(n) = phi;
phi = mod(phi + dphi, N_phases_per_cycle);
if xv(n) > 0
if last_n > 0
doRecalc = param_changed;
param_changed = 0;
den = (n - last_n);
dp = mod(xp(n) - last_xp, N_phases_per_cycle);
xdphi = dp/den;
err_phi = phase_error_detector(phi, xp(n));
err_dphi = frequency_error_detector(dphi, xdphi);
dphi = dphi - k_upd*err_dphi;
if doRecalc
phi = xp(n);
dphi = xdphi;
end
if xv(n) == 2
# phi = xp(n);
endif
endif
last_xp = xp(n);
last_n = n;
end
_err_phi = [_err_phi err_phi];
_err_dphi = [_err_dphi err_dphi];
_phi = [_phi phi];
_dphi = [_dphi dphi];
endfor
function err = phase_error_detector(lo, ext)
err = lo - ext;
endfunction
function err = frequency_error_detector(lo, ext)
err = lo - ext;
endfunction
close all
subplot(3, 1, 1)
plot (1:length(xp), xp, 1:length(yp), yp); legend('xp','yp'); grid;
subplot(3, 1, 2)
plot (1:length(_err_phi), _err_phi); legend('err_{phi}'); grid;
subplot(3, 1, 3)
plot (1:length(_err_dphi), _err_dphi); legend('err_{dphi}'); grid;
endfunction