Difference between revisions of "OCR"

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* You picture needs to have a strong contrast (black text, white background), and a good resolution.
 
* You picture needs to have a strong contrast (black text, white background), and a good resolution.
 
* The OCR program scans the picture and uses glyph libraries to detect the characters. Those that are recognised are transformed into the corresponding character.
 
* The OCR program scans the picture and uses glyph libraries to detect the characters. Those that are recognised are transformed into the corresponding character.
* Dictionnaries will be used to minimize errors. These compare the resulting words with existing words to determine the outcome and guess the words that were not fully recognized.
+
* Dictionaries will be used to minimize errors. These compare the resulting words with existing words to determine the outcome and guess the words that were not fully recognized.
 
* Some programs recognize bold, italic or custom fonts size.
 
* Some programs recognize bold, italic or custom fonts size.
  

Revision as of 15:38, 18 April 2007

While researching your family tree, you will use books or administrative documents. You may avoid long and annoying work or transcribing texts into GRAMPS by using optical character recognition (OCR).

Here we show you how to work on your picture or scan of a document to change it into typed text.

How does this work?

  • You picture needs to have a strong contrast (black text, white background), and a good resolution.
  • The OCR program scans the picture and uses glyph libraries to detect the characters. Those that are recognised are transformed into the corresponding character.
  • Dictionaries will be used to minimize errors. These compare the resulting words with existing words to determine the outcome and guess the words that were not fully recognized.
  • Some programs recognize bold, italic or custom fonts size.

Using OCR with GRAMPS

There is not a lot of OCR open sources programs, and those that exist mostly use the same backend. For Intelligent Word Recognition (IWR) or Intelligent Character Recognition (ICR), used for written certificates, they are even rarer.

You can use some of the programs alongside GRAMPS. For the backend tools, only command line tools are available (use -h for the options), but fortunately some GUI's have been made too:

  • Tesseract may be a good solution for english reader but it currently only recognizes US-ASCII characters ...
  • GOCR/JOCR is used by xsane and kooka. It can generate custom database characters from a picture with the command:
mkdir db
gocr -p db -m 130 -m 256 certificate.png
This will ask you of each new letter it recognizes what the value is (a,b,...), and will generate a new index (db.list) + portable-bitmap (pbm) for your letters. Each key entry on db.list is one of the .pbm files and is connected to your custom value (a, b, c ...)
This is however not very successfull on written text.
  • With Ocrad, you need to use pgm file format
  • People using KDE will probably know Kooka the standard KDE scanning tool with builtin OCR (using GOCR, Ocrad which are OSS, or the commercial KADMOS).
  • claraocr seems to be able to learn but I do not find any documentation. Also, need to use pgm or pbm file format.
  • Also, Conjecture is an OCR third party tool who incorporate both open sources programs code bases.

Example

I think the easiest would be to use kooka or xsane, scan an image and do OCR or importing an existing image into kooka and do OCR.