EP0469868A2

Binary image processing for decoding self-clocking glyph shape codes.

Abstract

Binary image processing techniques are provided for decoding bitmap image space representations of self-clocking glyph shape codes and for tracking the number and locations of the ambiguities (sometimes referred to herein as "errors") that are encountered during the decoding of such codes. A substantial portion of the image processing that is performed in the illustrated embodiment of this invention is carried out through the use of morphological filtering operations because of the parallelism that is offered by such operations.

EP0469868A2, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Projected expiry passed 30 July 2011, 15.2 years ago.

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10 claims: 3 independent, 7 dependent

  1. 1
    A process for decoding encoded digital information, the encoded information being in the form of a bitmap image space representation of a self-clocking glyph shape code composed of glyphs having shapes that encode digital data values, such that every distinct data value that is encoded by said code is represented by the shape of a respective glyph; said glyphs being selected from a set of n permissible glyph shapes, with each of said glyph shapes being preassigned to the encoding of a predetermined digital data value; said glyphs being spatially distributed in said bitmap image space in substantial accordance with a spatial formatting rule:said process comprising the steps of    locating at least three non-colinear reference points in said bitmap image space, said reference points having a predetermined nominal spatial relationship to each other;determining the spatial relationship of said reference points in said bitmap image space;from said spatial relationship classifying said glyphs by their shapes;and    assigning decoded data values to said shape classified glyphs in accordance with the data values preassigned to said glyph shapes.
  2. 3
    The decoding process of Claim 2 further including the step of positionally re-referencing said calibrated spatial formatting rule at each of said approximate glyph center position to that respective approximate glyph center position.
  3. 4
    The decoding process of Claim 2 wherein said X scale and Y scale correction factors also are calculated from the spatial relationship of said reference points in said bitmap image space.
  4. 5
    The decoding process of any one of Claims 2 to 4 wherein said filtering step is performed by morphologically ERODING said bitmap image space representation of said glyph code in accordance with at least n different hit-miss filters that are matched to respective ones of said glyph shapes.
  5. 6
    The decoding process of Claim 5 wherein said reference points are approximate centers of glyphs residing at corners of said bitmap image space representation of said glyph code.
  6. 7
    The decoding process of any one of Claims 2 to 4 further including the steps of morphologically OPENING said bitmap image space representation of said glyph code with a plurality of hit-miss filters, each of which is weakly matched to a respective one of said glyph shapes, thereby providing respective OPENED versions of said bitmap image space representation of said glyph code;Bit-ORing the OPENED versions of said bitmap image space representation of said glyph code to shrink said glyphs;and    identifying a single pixel proximate the center of each of said glyphs to establish the approximate center position thereof.
  7. 8
    The decoding process of Claim 7 wherein said reference points are approximate centers of glyphs residing at corners of said bitmap image space representation of said glyph code.
  8. 9
    The decoding process of any one of Claim 2 to 4 wherein said bitmap image space representation of said glyph code has substantial spatial periodicity vertically and horizontally, said process further including the steps of    morphologically OPENING said bitmap image space representation of said glyph code with verically oriented and horizontally oriented hit-miss filters which are matched to the vertical and horizontal spatial periodicity, respectively, of said bitmap image space representation of said glyph codes, thereby providing respective OPENED versions of said bitmap image space representation of said glyph code;Bit-ANDing the OPENED versions of said bitmap image space representation of said glyph code to shrink said glyphs;and    identifying a single pixel proximate the center of each of said glyphs to establish the approximate center position thereof.
  9. 10
    The decoding process of Claim 9 wherein said reference points are approximate centers of glyphs residing at corners of said bitmap image space representation of said glyph code.