Optical Character Recognition (OCR) from an app screen shot.

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Steven Terrana
Steven Terrana le 18 Avr 2015
Modifié(e) : Cindy Solomon le 21 Avr 2015
Hello,
I am trying to create a function that can convert the following image:
into a matrix that contains the value of each frame.
So, for the above image, the output would be
frames = [30 60 90 120 149 169 189 219 248 268;
18 28 58 88 118 148 175 194 203 212;
28 48 68 98 128 158 187 207 226 245];
The app can output a screenshot, so the frame locations will always be consistent.
I have managed to find these frame locations, crop them, and create a 3,10 cell containing the cropped images of each frame.
I have also managed to convert these images to binary, however I don't know if this gets me any closer to solving my problem.
I have looked into OCR and limiting the CharacterSet to numeric characters, but this is not yielding successful results.
I'm aware that 100% accuracy may not be possible, but it's what I'm striving for.
Any help would be greatly appreciated!

Réponses (1)

Cindy Solomon
Cindy Solomon le 21 Avr 2015
Modifié(e) : Cindy Solomon le 21 Avr 2015
Hi Steven,
When you mentioned that you looked into OCR, I assume you meant the "ocr" function in MATLAB, but if you haven't seen this doc page, thought it would be helpful to you:
However, I've done something similar without using the computer vision toolbox at all- if you know what the numbers will look like (for example, you take a screenshot of each of the numbers separately), you can essentially adapt what this person was doing for integer recognition:
This essentially entails creating a "test" image for each number as a training set, expanding that image and subtracting the original image so that it can test if the numbers are equivalent. This code in particular uses the binary hit-or-miss algorithm found here to identify the number. It recognizes the "left" or "right" of two digit numbers by just identifying which side of the image there is a match.
Attached is my adapted version of the File Exchange code with my own additions to it from when I used it for my project. I called that function within another function I named "process", which includes the following lines of code:
X= imread(File); %Read screenshot you want
im_gray = rgb2gray(X); %Convert to grayscale/1-channel image
im_bw = im2bw(im_gray,0.5); %Convert to black and white with threshold of 1/2
im_sub = im_bw(210:270,1636:1714); %Select region of interest for numbers
[Number]= intrec(im_sub); %Pattern recognition on the numbers (Integer recognition)
Output= Number; %Output the number
Hope this helps! It definitely makes it much easier that you know what the numbers should look like and where they would be.

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