Nova Patents
EP0541389A2

Method for predicting move compensation.

Abstract

The present invention provides a method for predicting motion compensation of an input image based on a motion vector of the input image from this input image to a reference image which has been sampled at a first set time. The method includes a unit for calculating a motion vector of the input image based on motion at a second set time, of a block unit which is a part of the input image and consists of a plurality of pixels, and a unit for calculating a motion vector of the reference image based on motion at the first set time, of a block unit which is a part of the reference image and consists also of a plurality of pixels. Motion compensation of the input image is calculated both from the motion vector of the input image and from the motion vector of the reference image.

EP0541389A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 6 November 2012, 13.9 years ago.

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  2. Filed
  3. Published
  4. Projected expiry
  5. Today

8 claims: 4 independent, 4 dependent

  1. 1
    A method for predicting move compensation for predicting move compensation of an input image based on a move vector of said input image from said input image to a reference image which has been sampled at a first set time, said method including means for calculating a move vector of said input image based on a move, at a second set time, of a block unit which is a part of said input image and consists of a plurality of pixels, and means for calculating a move vector of said reference image based on a move, at said first set time, of a block unit which is a part of said reference image and consists of a plurality of pixels, to thereby calculate move compensation of said input image at a desired set time both from said move vector of said input image and from said move vector of said reference image.
  2. 2
    A method for predicting move compensation according to Claim 1, wherein said means for calculating a move vector of said reference image sets at least two sampling times for sampling said reference image and calculates a move vector of said input image based on move data of said reference image in block units at said sampling times.
  3. 3
    A method for predicting move compensation for predicting move compensation of an input image based on a move vector of said input image from said input image to a reference image which has been sampled at a first set time, said method including means for calculating a move vector of said input image based on a move, at a second set time, of a block unit which is a part of said input image and consists of a plurality of pixels, and means for calculating a move vector of said reference image at said first set time by using said move vector of said input image, to thereby calculate move compensation of said input image at a desired set time both from said move vector of said input image and from said move vector of said reference image.
  4. 4
    A method for predicting move compensation according to Claim 1, wherein said means for calculating a move vector of said reference image sets at least two sampling times for sampling said reference image and calculates a move vector of said input image based on move data of said reference image in block units at said sampling times.
  5. 5
    A method for predicting move compensation for predicting move compensation of a plurality of pieces of input images based on a move vector of said plurality of input images from said input images to a reference image which has been sampled at a first set time, said method including means for calculating move vectors of said plurality of input images based on a move, at a second set time, of block units, each block being a part of each of said plurality of input images and consisting of a plurality of pixels, and means for calculating a move vector of said reference image based on a move, at said first set time, of a block unit which is a part of said reference image and consists of a plurality of pixels, said move vectors of said plurality of input images being assumed to be the same, to thereby calculate move compensation of said input image at a desired time both from said move vector of said input images and from said move vector of said reference image.
  6. 6
    A method for predicting move compensation according to Claim 5, wherein said means for calculating a move vector of said reference image sets at least two sampling times for sampling said reference image and calculates a move vector of said input image based on move data of said reference image in block units at said sampling times.
  7. 7
    A method for predicting move compensation for predicting move compensation of a plurality of pieces of input images based on a move vector of said plurality of input images from said input images to a reference image which has been sampled at a first set time, said method including means for calculating move vectors of said plurality of input images based on a move, at a second set time, of block units, each block being a part of each of said plurality of input images and consisting of a plurality of pixels, and means for calculating a move vector of said reference image at said first set time by using said move vectors of said plurality of input images, said move vectors of said plurality of input images being assumed to be the same, to thereby calculate move compensation of said input image at a desired time both from said move vector of said input images and from said move vector of said reference image.
  8. 8
    A method for predicting move compensation according to Claim 7, wherein said means for calculating a move vector of said reference image sets at least two sampling times for sampling said reference image and calculates a move vector of said input image based on move data of said reference image in block units at said sampling times.