| 1 | %%% Computes the extrinsic parameters for all the active calibration images
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| 2 |
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| 3 | check_active_images;
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| 4 |
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| 5 | N_points_views = zeros(1,n_ima);
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| 6 |
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| 7 | for kk = 1:n_ima,
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| 8 |
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| 9 | if exist(['x_' num2str(kk)]),
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| 10 |
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| 11 | eval(['x_kk = x_' num2str(kk) ';']);
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| 12 | eval(['X_kk = X_' num2str(kk) ';']);
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| 13 |
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| 14 | if (isnan(x_kk(1,1))),
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| 15 | if active_images(kk),
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| 16 | fprintf(1,'Warning: Cannot calibrate with image %d. Need to extract grid corners first.\n',kk)
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| 17 | fprintf(1,' Set active_images(%d)=1; and run Extract grid corners.\n',kk)
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| 18 | end;
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| 19 | end;
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| 20 | if active_images(kk),
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| 21 | N_points_views(kk) = size(x_kk,2);
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| 22 | [omckk,Tckk] = compute_extrinsic_init(x_kk,X_kk,fc,cc,kc,alpha_c);
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| 23 | [omckk,Tckk,Rckk,JJ_kk] = compute_extrinsic_refine(omckk,Tckk,x_kk,X_kk,fc,cc,kc,alpha_c,20,thresh_cond);
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| 24 | if check_cond,
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| 25 | if (cond(JJ_kk)> thresh_cond),
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| 26 | active_images(kk) = 0;
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| 27 | omckk = NaN*ones(3,1);
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| 28 | Tckk = NaN*ones(3,1);
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| 29 | fprintf(1,'\nWarning: View #%d ill-conditioned. This image is now set inactive.\n',kk)
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| 30 | desactivated_images = [desactivated_images kk];
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| 31 | end;
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| 32 | end;
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| 33 | if isnan(omckk(1,1)),
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| 34 | %fprintf(1,'\nWarning: Desactivating image %d. Re-activate it later by typing:\nactive_images(%d)=1;\nand re-run optimization\n',[kk kk])
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| 35 | active_images(kk) = 0;
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| 36 | end;
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| 37 | else
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| 38 | omckk = NaN*ones(3,1);
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| 39 | Tckk = NaN*ones(3,1);
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| 40 | end;
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| 41 |
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| 42 | else
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| 43 |
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| 44 | omckk = NaN*ones(3,1);
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| 45 | Tckk = NaN*ones(3,1);
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| 46 |
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| 47 | if active_images(kk),
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| 48 | fprintf(1,'Warning: Cannot calibrate with image %d. Need to extract grid corners first.\n',kk)
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| 49 | fprintf(1,' Set active_images(%d)=1; and run Extract grid corners.\n',kk)
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| 50 | end;
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| 51 |
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| 52 | active_images(kk) = 0;
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| 53 |
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| 54 | end;
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| 55 |
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| 56 | eval(['omc_' num2str(kk) ' = omckk;']);
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| 57 | eval(['Tc_' num2str(kk) ' = Tckk;']);
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| 58 |
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| 59 | end;
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| 60 |
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| 61 |
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| 62 | check_active_images;
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