Claims
- 1. An image transformation method for translating a non-linear 2D geometrical transformation into two separable 1D geometrical transformations, said method comprising the steps of:
(a) determining the inverse of the non-linear 2D geometrical transformation to form an inverse 2D geometrical transformation; (b) converting the inverse 2D geometrical transformation into an analytical inverted 2D geometrical transformation; (c) separating the analytical inverse 2D geometrical transformation into a first and second 1D geometrical transformations; (d) representing said inverse 2D geometrical transformation and said first and second 1D geometrical transformations as tensor spline surfaces; and (e) comparing an evaluation of said first and second 1D geometrical transformations at each pixel with an evaluation of the analytical inverse 2D geometrical transformation at each pixel and repeat steps (c) and (d) until said evaluation meets a predetermined level of performance.
- 2. The method of claim 1, further comprising the step of performing a geometric transformation on the inverse map, between steps (b) and (c).
- 3. The method of claim 1, wherein said inverse 2D geometrical transformation must be defined on a uniform point mapping grid.
- 4. The method of claim 1, wherein said inverse 2D geometrical transformation is applied in combination with a scaling map.
- 5. An image transformation system for translating a non-linear 2D geometrical transformation into two separable 1D geometrical transformations, said image transformation system comprising:
(a) a processor for determining the inverse of the non-linear 2D geometrical transformation to form an inverse 2D geometrical transformation; (b) a converter module coupled to the processor for converting the inverse 2D geometrical transformation into an analytical inverted 2D geometrical transformation; (c) a separator module coupled to the processor for separating the analytical inverse 2D geometrical transformation into a first and second 1D geometrical transformations; (d) a representation module for representing said inverse 2D geometrical transformation and said first and second 1D geometrical transformations as tensor spline surfaces; and (e) a comparison module for comparing an evaluation of said first and second 1D geometrical transformations at each pixel with an evaluation of the analytical inverse 2D geometrical transformation at each pixel and repeat steps (c) and (d) until said evaluation meets a predetermined level of performance.
- 6. The image transformation system of claim 5, further comprising a geometrical module coupled to the processor for performing a geometric transformation on the inverse map.
- 7. The image transformation system of claim 5, wherein said inverse 2D geometrical transformation must be defined on a uniform point mapping grid.
- 8. The image transformation system of claim 5, wherein said inverse 2D geometrical transformation is applied in combination with a scaling map.
Parent Case Info
[0001] This regular application claims priority from provisional U.S. Application No. 60/297,240 filed Jun. 12, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
|
60297240 |
Jun 2001 |
US |