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How do I detect the x,y co-ordinates of the location of the onion after it has been detected by the cross correlation program?

조회 수: 1 (최근 30일)
I am using a cross correlation program to detect the location of a particle in many frames and I used the demo code below to develop my program, how do I get the x, y coordinates of the particle in each frame after it has been detected by the cross correlation program
% Demo to use normxcorr2 to find a template (a white onion)
% in a larger image (pile of vegetables)
clc; % Clear the command window.
close all; % Close all figures (except those of imtool.)
imtool close all; % Close all imtool figures.
clear; % Erase all existing variables.
workspace; % Make sure the workspace panel is showing.
format longg;
format compact;
fontSize = 20;
% Check that user has the Image Processing Toolbox installed.
hasIPT = license('test', 'image_toolbox');
if ~hasIPT
% User does not have the toolbox installed.
message = sprintf('Sorry, but you do not seem to have the Image Processing Toolbox.\nDo you want to try to continue anyway?');
reply = questdlg(message, 'Toolbox missing', 'Yes', 'No', 'Yes');
if strcmpi(reply, 'No')
% User said No, so exit.
return;
end
end
% Read in a standard MATLAB color demo image.
folder = fullfile(matlabroot, '\toolbox\images\imdemos');
baseFileName = 'peppers.png';
% Get the full filename, with path prepended.
fullFileName = fullfile(folder, baseFileName);
if ~exist(fullFileName, 'file')
% Didn't find it there. Check the search path for it.
fullFileName = baseFileName; % No path this time.
if ~exist(fullFileName, 'file')
% Still didn't find it. Alert user.
errorMessage = sprintf('Error: %s does not exist.', fullFileName);
uiwait(warndlg(errorMessage));
return;
end
end
rgbImage = imread(fullFileName);
% Get the dimensions of the image. numberOfColorBands should be = 3.
[rows columns numberOfColorBands] = size(rgbImage);
% Display the original color image.
subplot(2, 2, 1);
imshow(rgbImage, []);
axis on;
title('Original Color Image', 'FontSize', fontSize);
% Enlarge figure to full screen.
set(gcf, 'units','normalized','outerposition',[0 0 1 1]);
smallSubImage = imcrop(rgbImage, [192 82 60 52]);
subplot(2, 2, 2);
imshow(smallSubImage, []);
axis on;
title('Template Image to Search For', 'FontSize', fontSize);
% Search the red channel for a match.
correlationOutput = normxcorr2(smallSubImage(:,:,1), rgbImage(:,:,1));
subplot(2, 2, 3);
imshow(correlationOutput, []);
title('Normalized Cross Correlation Output', 'FontSize', fontSize);
[maxCorrValue, maxIndex] = max(abs(correlationOutput(:)));
[ypeak, xpeak] = ind2sub(size(correlationOutput),maxIndex(1));
corr_offset = [(xpeak-size(smallSubImage,2)) (ypeak-size(smallSubImage,1))];
subplot(2, 2, 4);
imshow(rgbImage);
hold on;
rectangle('position',[corr_offset(1) corr_offset(2) 50 50],...
'edgecolor','g','linewidth',2);
title('Template Image Found in Original Image', 'FontSize', fontSize);

채택된 답변

Image Analyst
Image Analyst 2013년 4월 3일
Looks like my code you got from this question. I noticed a small error when it's drawing the rectangle. It should read
rectangle('position',[corr_offset(1) corr_offset(2) 60 52],...
'edgecolor','g','linewidth',2);
so that the rectangle has the same width and height as the template.
Anyway, look at the 'position' property I sent into the rectangle() function. That defines the [xLeft, yTop, xWidth, yHeight] of where the template subimage occurs in the original image, as you can see because it places the rectangle in the proper location over the original image.
  댓글 수: 18
EngStudent
EngStudent 2013년 4월 11일
How do I make the cross correlation program to detect really small displacement across many frames
EngStudent
EngStudent 2013년 4월 18일
What does 1 and 2 mean in size(sub_rgbImage,2) and size(sub_rgbImage,1) and also what does the rect_offset mean?
maxCorrValue, maxIndex] = max(abs(correlationOutput(:)))
[ypeak, xpeak] = ind2sub(size(correlationOutput),maxIndex(1))
corr_offset = [(xpeak-size(sub_rgbImage,2))
(ypeak-size(sub_rgbImage,1))]
%relative offset between position of subimages
rect_offset = [(rect_A(1)- rect_rgbImage(1))
(rect_A(2)- rect_rgbImage(2))]
%total offset
offset = corr_offset + rect_offset
xoffset= offset(1)
yoffset= offset(2)

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