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apply_rotfiltfilt_via_fft.m
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apply_rotfiltfilt_via_fft.m
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%
% This file is part of pichim's controller tuning framework.
%
% This sofware is free. You can redistribute this software
% and/or modify this software 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 software 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 software.
%
% If not, see <http:%www.gnu.org/licenses/>.
%
%%
function xf = apply_rotfiltfilt_via_fft(G, sinarg, x, Ts)
% signal size
[Nx, nx] = size(x);
xf = zeros(Nx, nx);
p = exp(1j*(sinarg));
df = 1 / (Nx * Ts);
fnyq = 1 / (2 * Ts);
freq = (0:df:2*fnyq-df).';
g = squeeze(freqresp(G, 2*pi*freq));
g = g .* conj(g);
for i = 1:nx
% eliminate mean
y = x(:,i) - mean(x(:,i));
yR = y .* p;
yQ = y .* conj(p);
% filtering in transformed coordinates
yR = filtfilt_fft(g, yR);
yQ = filtfilt_fft(g, yQ);
% back transformation
% xf(:,i) = real((yR.*conj(p) + yQ.*p)*0.5); % scaling does not
% matter if we build the raio anyways
xf(:,i) = real((yR.*conj(p) + yQ.*p));
end
end
function y = filtfilt_fft(g, x)
y = ifft( fft(x) .* g );
end