Claims
- 1. A picture decoding apparatus comprising:a demultiplexing section configured to demultiplex coded data into coded alpha-map data and coded position/size data; a position/size decoder section configured to decode the coded position/size data; and an alpha-map decoder section configured to decode the coded alpha-map data into an alpha-map signal of a rectangular object region in accordance with the coded position/size data, the rectangular object region containing an object and a part of a background surrounding the object.
- 2. The picture decoding apparatus according to claim 1, wherein said position/size decoder section decodes an address of a corner of the object region and dimensions thereof in horizontal and vertical directions.
- 3. The picture decoding apparatus according to claim 1, wherein the object region comprises a plurality of blocks, each of which is a processing unit for decoding.
- 4. The picture decoding apparatus according to claim 1, wherein the object region includes an intergral number of blocks, each of which is a processing unit for decoding.
- 5. The picture decoding apparatus according to claim 1, wherein the alpha-map signal includes information for discriminating between the object and the background in accordance with a binary “0” or “1”.
- 6. A method of decoding a picture comprising the steps of:demultiplexing coded data including into coded alpha-map data and coded position/size data; decoding the coded position/size data; and decoding the coded alpha-map data into an alpha-map signal of a rectangular object region in accordance with the coded position/size data, the rectangular object region containing an object and a part of a background surrounding the object.
- 7. The picture decoding method according to claim 6, wherein said step of decoding the coded position/size data decodes an address of a corner of the object region and dimensions thereof in horizontal and vertical directions.
- 8. The picture decoding method according to claim 6, wherein the object region includes a plurality of blocks, each of which is a processing unit for decoding.
- 9. The picture decoding method according to claim 1, wherein the object region includes an intergral number of blocks, each of which is a processing unit for decoding.
- 10. The picture decoding method according to claim 1, wherein the alpha-map signal includes information for discriminating between the object and the background in accordance with a binary “0” or “1”.
Priority Claims (3)
Number |
Date |
Country |
Kind |
7-276989 |
Sep 1995 |
JP |
|
7-276990 |
Sep 1995 |
JP |
|
7-281028 |
Oct 1995 |
JP |
|
Parent Case Info
This application is a division of Ser. No. 09/069,852 filed Apr. 30, 1998 now U.S. Pat. No. 6,088,486 which is a continuation of Ser. No. 08/722,943 filed Sep. 30, 1996 now U.S. Pat. No. 5,883,678.
US Referenced Citations (15)
Non-Patent Literature Citations (1)
Entry |
A.K. Jain. “Fundamentals of Digital Image Processing”, Prentice Hall, Chapter 11, Section 11.9, (pp. 548-551), 1989. |
Continuations (1)
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Number |
Date |
Country |
Parent |
08/722943 |
Sep 1996 |
US |
Child |
09/069852 |
|
US |