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frefine.m
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%FREFINE refine estimate of fundamental matrix
%
% fr = frefine(F, uv1, uv2)
%
% Return a refined estimate of fundamental matrix using non-linear
% optimization and enforcing the rank-2 constraint.
% Copyright (C) 1993-2011, by Peter I. Corke
%
% This file is part of The Machine Vision Toolbox for Matlab (MVTB).
%
% MVTB is free software: you can redistribute it and/or modify
% it under the terms of the GNU Lesser General Public License as published by
% the Free Software Foundation, either version 3 of the License, or
% (at your option) any later version.
%
% MVTB 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 Lesser General Public License for more details.
%
% You should have received a copy of the GNU Leser General Public License
% along with MVTB. If not, see <http://www.gnu.org/licenses/>.
function fr = frefine(F, uv1, uv2)
A = [];
for i=1:numrows(uv1),
a = [ uv1(i,1)*uv2(i,1)
uv1(i,2)*uv2(i,1)
uv2(i,1)
uv1(i,1)*uv2(i,2)
uv1(i,2)*uv2(i,2)
uv2(i,2)
uv1(i,1)
uv1(i,2)
1
];
A = [A; a'];
end
f = F';
f = f(:);
fprintf('Initial residual is %g\n', norm(A * f));
fprintf('Initial determinant is %g\n', det(F));
options = optimset('MaxFunEvals', 10000, ...
'LevenbergMarquardt', 'on', ...
'TolFun', 1e-16, ...
'TolCon', 1e-16, ...
'LargeScale', 'off' ...
);
fr = fmincon(@fun, f, [], [], [], [], [], [], ...
@nlfun, options, A);
fprintf('Final residual is %g\n', norm(A * fr));
fr = reshape(fr, 3, 3)';
det(fr)
fprintf('Final determinant is %g\n', det(fr));
function e = fun(x, A)
e = norm(A * x);
function [c,ceq] = nlfun(x, A)
ceq = abs( det(reshape(x, 3, 3)) );
c = [];