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estimate_delay.m
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estimate_delay.m
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clear
%% load delay logs
%{
realtime_path = '/home/abarry/realtime/';
logfile_path = '/home/abarry/rlg/logs/2014-12-05-delay-estimation/mat/';
%logfile_name = 'right_elevon_rightside_up.mat';
logfile_name = 'left_elevon_upside_down.mat';
% add log parsing scripts to path
addpath([realtime_path 'scripts/logs']);
% load data
dir = logfile_path;
filename = logfile_name;
loadDeltawing
%}
load estimate_delay_processed.mat
%% set up data
optotrak_data = optotrak.y;
u_data = u.elevonL;
figure(1)
clf
plotyy(optotrak.logtime, -optotrak_data, u.logtime, u_data)
legend('optotrak','u');
% create splines of the data
t_start = 26.8;
t_end = 28.6;
[~, optotrak_idx_start] = min(abs(optotrak.logtime - t_start));
[~, optotrak_idx_end] = min(abs(optotrak.logtime - t_end));
[~, u_idx_start] = min(abs(u.logtime - t_start));
[~, u_idx_end] = min(abs(u.logtime - t_end));
x_s = spline(optotrak.logtime(optotrak_idx_start:optotrak_idx_end), optotrak_data(optotrak_idx_start:optotrak_idx_end));
u_r_s = foh(u.logtime(u_idx_start:u_idx_end)', u_data((u_idx_start:u_idx_end))');
dt = 1/10000;
t = t_start:dt:t_end;
x_eval = ppval(x_s, t);
u_r_eval = -ppval(u_r_s, t);
figure(2)
clf
plotyy(t, x_eval, t, u_r_eval);
legend('optotrak','u');
%% normalize vectors
x_norm = x_eval / norm(x_eval);
u_r_zeroed = u_r_eval - mean(u_r_eval);
u_r_norm = u_r_zeroed / norm(u_r_zeroed);
figure(3)
clf
plot(x_norm);
hold all
plot(u_r_norm);
legend('optotrak','u');
grid on
%% estimate delay
delay = finddelay(u_r_norm, x_norm);
delay_sec = delay*dt