EP1735751A2

Fractal skr-method for evaluating image quality

Abstract

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Projected expiry passed 13 April 2025, 1.4 years ago.

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20 claims: 16 independent, 4 dependent

  1. 1
    Claims of equivalent WO 2005101312 A2 Claims 1. Method for evaluating the quality of an image using a test matrix system which comprises test matrices having an internal S k , r matrix structure, wherein k and r are different from zero.
  2. 2
    Method for evaluating the quality of an image comprising the steps of a) generating a suitable image of an object using an optical device, b) defining an actual matrix for said generated image, said actual matrix comprises a value for each pixel of the generated image, c) providing a test matrix system comprising reference matrices which define reference images and wherein each reference matrix comprises a value for each pixel of the reference image, d) identifying a best-fit matrix, which shows the best-fit with the actual matrix, e) defining image quality parameters of the generated image by deducing said image quality parameters from the best-fit matrix identified in step d), f) providing a report of the image quality parameters of the generated image, characterized in that the test matrix system comprises test matrices having an internal S k , r matrix structure, wherein k and r are different from zero.
  3. 5
    Method according to any of claims 1 to 4, characterized in that the method further comprises the steps of:- correcting the image quality parameters of the generated image such that the generated image closely fits standard image quality parameters, and - restoring and visually displaying the generated image after image correction.
  4. 6
    Method according to any of claims 1 to 5, characterized in that the image quality parameters are corrected by correcting the operational parameters of the optical device by means of a software program based on self-tuning algorithms.
  5. 7
    Method according to any of claims 1 to 6, characterized in that said image comprises a sequence of images.
  6. 8
    Method according to any of claims 1 to 7, characterized in that the image quality parameters of the generated image or a ROI thereof are determined on a pixel-by- pixel basis by comparing the values of the actual matrix or of the actual sub-matrix respectively representing the pixels of the generated image or a ROI thereof with the values of a test matrix, representing the pixels of a test image.
  7. 9
    Method according to any of claims 1 to 7, characterized in that the image quality parameters of the generated image or a ROI thereof are determined on a zone-by- zone basis by comparing a zone on the actual matrix or on the actual sub-matrix respectively representing the generated image or a ROI thereof with a zone on the test matrix, representing a test image.
  8. 10
    Method according to any of claims 1 to 7, characterized in that the image quality parameters of the generated image or a ROI thereof are determined on an image-by- image basis by comparing the actual image or a ROI thereof with a reference image. O-J
  9. 11
    Method according to any of claims 1 to 10 characterized in that said test matrix system comprises test matrices having only one eigenvalue which differs from zero.
  10. 12
    The method according to any of claims 1 to 11 , characterized in that the test matrix system comprises matrices which are the Kronecker product of two or more test matrices having an internal S k,r sum structure.
  11. 13
    Use of a test matrix system comprising test matrices having an internal S k , r matrix structure, wherein k and r are different from zero for evaluating the quality of an image.
  12. 16
    Use of a test matrix system according to any of claims 13 to 15 for evaluating the quality of an image on a two dimensional basis.
  13. 17
    Use of a test matrix system according to any of claims 13 to 16, for evaluating the quality of a generated image on a pixel-by-pixel basis, on a zone-by-zone basis or on an average image basis.
  14. 18
    Use of a test matrix system according to any of claims 13 to 17 for evaluating the quality of a sequence of images.
  15. 19
    Use of a test matrix system according to any of claims 13 to 18 for evaluating the quality of an optical device.
  16. 20
    Use of a test matrix system according to any of claims 13 to 18 for calibrating an optical device.