source: proiecte/pmake3d/make3d_original/Make3dSingleImageStanford_version0.1/image3dstiching/ransac/ransacmatches.m @ 37

Last change on this file since 37 was 37, checked in by (none), 14 years ago

Added original make3d

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1% *  This code was used in the following articles:
2% *  [1] Learning 3-D Scene Structure from a Single Still Image,
3% *      Ashutosh Saxena, Min Sun, Andrew Y. Ng,
4% *      In ICCV workshop on 3D Representation for Recognition (3dRR-07), 2007.
5% *      (best paper)
6% *  [2] 3-D Reconstruction from Sparse Views using Monocular Vision,
7% *      Ashutosh Saxena, Min Sun, Andrew Y. Ng,
8% *      In ICCV workshop on Virtual Representations and Modeling
9% *      of Large-scale environments (VRML), 2007.
10% *  [3] 3-D Depth Reconstruction from a Single Still Image,
11% *      Ashutosh Saxena, Sung H. Chung, Andrew Y. Ng.
12% *      International Journal of Computer Vision (IJCV), Aug 2007.
13% *  [6] Learning Depth from Single Monocular Images,
14% *      Ashutosh Saxena, Sung H. Chung, Andrew Y. Ng.
15% *      In Neural Information Processing Systems (NIPS) 18, 2005.
16% *
17% *  These articles are available at:
18% *  http://make3d.stanford.edu/publications
19% *
20% *  We request that you cite the papers [1], [3] and [6] in any of
21% *  your reports that uses this code.
22% *  Further, if you use the code in image3dstiching/ (multiple image version),
23% *  then please cite [2].
24% * 
25% *  If you use the code in third_party/, then PLEASE CITE and follow the
26% *  LICENSE OF THE CORRESPONDING THIRD PARTY CODE.
27% *
28% *  Finally, this code is for non-commercial use only.  For further
29% *  information and to obtain a copy of the license, see
30% *
31% *  http://make3d.stanford.edu/publications/code
32% *
33% *  Also, the software distributed under the License is distributed on an
34% * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either
35% *  express or implied.   See the License for the specific language governing
36% *  permissions and limitations under the License.
37% *
38% */
39function [F, inliers, fail] = ransacmatches(defaultPara, f1, f2, matches, I1, I2, disp)
40% Computes the fundamental matrix and inlier matches using ransac.  Points
41% are sampled non-uniformly in order to prefer more matches that are spread
42% across the image.  Otherwise the algorithm is standard.
43% input:  f1          - x,y coordinates of all feature frames in image 1
44%         f2          - same for image 2
45%         matches     - 2 by nummatches array specifying the initial set of
46%                       possible matches between f1 and f2
47%         I1/I2       - optional images to display
48%         disp        - if true, display the matches found when done.
49
50x1 = [];
51x2 = [];
52
53nmatches = size(matches, 2)
54for i=1:nmatches
55    x1(i, 1:2) = f1(1:2, matches(1, i));
56    x2(i, 1:2) = f2(1:2, matches(2, i));
57end
58
59% calculate distances
60% d1 is the sum of the squares of the distance from each point
61% in im1 to every other point
62% will use dist (the normalized avg distance for that match)
63% to weight the sampling algorithm for ransac
64d1=[];
65d2=[];
66for i=1:nmatches
67    d1(i) = sum(sum( ((ones(nmatches, 1) * x1(i, 1:2)) - x1).^2));
68    d2(i) = sum(sum( ((ones(nmatches, 1) * x2(i, 1:2)) - x2).^2));
69end
70dist=(d1+d2)/sum(sum(d1+d2));
71
72% Assemble homogeneous feature coordinates for fitting of the
73% fundamental matrix, note that [x,y] corresponds to [col, row]
74x1 = [x1'; ones(1, length(x1))]; %[m1(2,:); m1(1,:); ones(1,length(m1))];
75x2 = [x2'; ones(1, length(x1))]; %[m2(2,:); m2(1,:); ones(1,length(m1))];   
76   
77t = .002;  % Distance threshold for deciding outliers
78t_more = .001;  % Distance threshold for deciding outliers (MS added)
79
80[F, inliers, fail] = ransacfitfundmatrix(defaultPara, x1, x2, t, zeros(2), zeros(2), dist, 1, 1, 0);
81% [inliers_more] = ransacPrune(F, x1, x2, t_more, 1, dist); % MS added
82
83if disp
84    figure(2) ; clf ;
85    plotmatches(I1,I2,f1, f2,matches(:, inliers), 'Stacking', 'v'); %, 'Interactive', 1) ;
86    vgg_gui_F(I1, I2, F');
87end
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