CA2087802C

Arrangement of encoding motion image signals using motion compensation and orthogonal transformation

Abstract

A plurality of frame image signals are successivelyapplied to an image signal encoder. A motion region ofan incoming frame image signal is extracted and thenapproximated in shape to a polygon. The vertices of thepolygon are determined and then the coordinate values ofthe vertices are calculated and transmitted. Further, inthe event that the incoming image signal includes aregion which is required to undergo orthogonaltransformation, the region are extracted and then dividedinto a plurality of small regions. Following, each ofthe divided small regions is approximated in shape to apolygon and then the vertices thereof are detected. Subsequently, the coordinate values of the vertices arecalculated and then transmitted. Consequently, the datato be transmitted can effectively be reduced.

Term

Term ended

Expired 21 January 2013, 13.7 years ago.

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

4 claims: 4 independent, 0 dependent

  1. 1
    -9 What is claimed is:1. An arrangement of encoding a plurality of image signals successively applied thereto, said arrangement comprising: first means for storing a first image signal;second means which is coupled to said first means and extracts a motion region included in a second image signal by comparing said first and second image signals, said second image signal having been applied to said arrangement immediately after said first image signal;third means which is coupled to said second means and approximates in shape said motion region to a first polygon and extracting vertices of said first polygon and calculating coordinate values of said vertices, said third means generating first information indicative of said coordinates values from said arrangement;fourth means which is arranged to receive said first and second image signals and a signal indicative of said first polygon, said fourth means generating motion parameters and a predicted image signal, said motion parameters being derived from said arrangement;fifth means which is arranged to compare said predicted image signal and said second image signal, said fifth means extracting, from said second signal, a first region which is required to be orthogonally transformed;sixth means which is arranged to receive said first region and said second image signal, said sixth means dividing said first region into a plurality of second regions;seventh means, coupled to said sixth means, for approximating in shape each of said second regions to second polygons and extracting vertices of each of said second polygons and calculating coordinate values of said vertices of each of said second polygons, said seventh -10 means generating second information indicating said coordinate values of said vertices of each of said second polygons, said second information being derived from said arrangement.
  2. 2
    An arrangement as claimed in claim 1, wherein said third means includes:a polygon generator which is coupled to said second means and approximates in shape said motion region to said first polygon;and a polygon vertex extractor which is coupled to said polygon generator and calculates said vertices of said first polygon, said polygon vertex extractor generating said first information.
  3. 3
    An arrangement as claimed in claim 1, wherein said seventh means includes:a polygon generator which is coupled to said fifth means and approximates in shape each of said second regions to the second polygon, said polygon generator generating third information indicative of said second polygon;a polygon vertex extractor which is coupled to said polygon generator and calculates said vertices of each of said second polygons, said polygon vertex extractor generating said second information .
  4. 4
    An arrangement as claimed in claim 3, further comprising:eighth means which is arranged to receive said second image signal and said third information, said eighth means generating an orthogonally transforming parameters from said arrangement.