Nova Patents
EP1237377B1

Image decoding

Abstract

This record has no abstract on file.

EP1237377B1, drawing sheet 1
Sheet 1 of 38

Term

Term ended

Expired 8 June 2018, 8.3 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

1 claim: 1 independent, 0 dependent

  1. 1
    A method for decoding images comprising the steps of:storing a decoded image of a previously decoded frame as a reference image (210), extracting motion vector information (202) from input information to be decoded, and performing motion compensation using said motion vector information and said reference image for synthesising a prediction image (212), wherein pixel value interpolation for obtaining said prediction image is performed by using a rounding method specified by rounding method information, which specifies whether positive rounding or negative rounding is used;characterised in that the method further includes a step for extracting the rounding method information from the input information of the image to be decoded, wherein the rounding method information for specifying the rounding method to be used in each pixel value interpolation step consists of one bit, wherein said pixel value interpolation by using said positive rounding is calculated according to the equations: lb = La + Lb + l / 2 , lc = La + Lc + l / 2 , and ld = La + Lb + Lc + Ld + 2 / 4 , and said pixel value interpolation by using said negative rounding is calculated according to the equations: lb = La + Ld / 2 , lc = La + Lc / 2 , and ld = La + Lb + Lc + Ld + l / 4 , where La, Lb, Lc, and Ld are respectively the intensity values of a first pixel, a second pixel which is horizontally adjacent to said first pixel, a third pixel which is vertically adjacent to said first pixel, and a forth pixel which is vertically adjacent to said second pixel and horizontally adjacent to said third pixel, and Ib, Ic, and Id are respectively the interpolated intensity values of the middle point between said first and second pixel, the middle point between said first and third pixel, and the middle point between said first, second, third, and fourth pixel.