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FastDeskew.cpp 3.9 kB

7 years ago
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  1. //
  2. // Created by Jack Yu on 02/10/2017.
  3. //
  4. #include "FastDeskew.h"
  5. namespace pr{
  6. const int ANGLE_MIN = 30 ;
  7. const int ANGLE_MAX = 150 ;
  8. const int PLATE_H = 36;
  9. const int PLATE_W = 136;
  10. int angle(float x,float y)
  11. {
  12. return atan2(x,y)*180/3.1415;
  13. }
  14. std::vector<float> avgfilter(std::vector<float> angle_list,int windowsSize) {
  15. std::vector<float> angle_list_filtered(angle_list.size() - windowsSize + 1);
  16. for (int i = 0; i < angle_list.size() - windowsSize + 1; i++) {
  17. float avg = 0.00f;
  18. for (int j = 0; j < windowsSize; j++) {
  19. avg += angle_list[i + j];
  20. }
  21. avg = avg / windowsSize;
  22. angle_list_filtered[i] = avg;
  23. }
  24. return angle_list_filtered;
  25. }
  26. void drawHist(std::vector<float> seq){
  27. cv::Mat image(300,seq.size(),CV_8U);
  28. image.setTo(0);
  29. for(int i = 0;i<seq.size();i++)
  30. {
  31. float l = *std::max_element(seq.begin(),seq.end());
  32. int p = int(float(seq[i])/l*300);
  33. cv::line(image,cv::Point(i,300),cv::Point(i,300-p),cv::Scalar(255,255,255));
  34. }
  35. cv::imshow("vis",image);
  36. }
  37. cv::Mat correctPlateImage(cv::Mat skewPlate,float angle,float maxAngle)
  38. {
  39. cv::Mat dst;
  40. cv::Size size_o(skewPlate.cols,skewPlate.rows);
  41. int extend_padding = 0;
  42. extend_padding = static_cast<int>(skewPlate.rows*tan(cv::abs(angle)/180* 3.14) );
  43. cv::Size size(skewPlate.cols + extend_padding ,skewPlate.rows);
  44. float interval = abs(sin((angle /180) * 3.14)* skewPlate.rows);
  45. cv::Point2f pts1[4] = {cv::Point2f(0,0),cv::Point2f(0,size_o.height),cv::Point2f(size_o.width,0),cv::Point2f(size_o.width,size_o.height)};
  46. if(angle>0) {
  47. cv::Point2f pts2[4] = {cv::Point2f(interval, 0), cv::Point2f(0, size_o.height),
  48. cv::Point2f(size_o.width, 0), cv::Point2f(size_o.width - interval, size_o.height)};
  49. cv::Mat M = cv::getPerspectiveTransform(pts1,pts2);
  50. cv::warpPerspective(skewPlate,dst,M,size);
  51. }
  52. else {
  53. cv::Point2f pts2[4] = {cv::Point2f(0, 0), cv::Point2f(interval, size_o.height), cv::Point2f(size_o.width-interval, 0),
  54. cv::Point2f(size_o.width, size_o.height)};
  55. cv::Mat M = cv::getPerspectiveTransform(pts1,pts2);
  56. cv::warpPerspective(skewPlate,dst,M,size,cv::INTER_CUBIC);
  57. }
  58. return dst;
  59. }
  60. cv::Mat fastdeskew(cv::Mat skewImage,int blockSize){
  61. const int FILTER_WINDOWS_SIZE = 5;
  62. std::vector<float> angle_list(180);
  63. memset(angle_list.data(),0,angle_list.size()*sizeof(int));
  64. cv::Mat bak;
  65. skewImage.copyTo(bak);
  66. if(skewImage.channels() == 3)
  67. cv::cvtColor(skewImage,skewImage,cv::COLOR_RGB2GRAY);
  68. if(skewImage.channels() == 1)
  69. {
  70. cv::Mat eigen;
  71. cv::cornerEigenValsAndVecs(skewImage,eigen,blockSize,5);
  72. for( int j = 0; j < skewImage.rows; j+=blockSize )
  73. { for( int i = 0; i < skewImage.cols; i+=blockSize )
  74. {
  75. float x2 = eigen.at<cv::Vec6f>(j, i)[4];
  76. float y2 = eigen.at<cv::Vec6f>(j, i)[5];
  77. int angle_cell = angle(x2,y2);
  78. angle_list[(angle_cell + 180)%180]+=1.0;
  79. }
  80. }
  81. }
  82. std::vector<float> filtered = avgfilter(angle_list,5);
  83. int maxPos = std::max_element(filtered.begin(),filtered.end()) - filtered.begin() + FILTER_WINDOWS_SIZE/2;
  84. if(maxPos>ANGLE_MAX)
  85. maxPos = (-maxPos+90+180)%180;
  86. if(maxPos<ANGLE_MIN)
  87. maxPos-=90;
  88. maxPos=90-maxPos;
  89. cv::Mat deskewed = correctPlateImage(bak, static_cast<float>(maxPos),60.0f);
  90. return deskewed;
  91. }
  92. }//namespace pr