IP Library › Granted Patent US 10,397,602
Granted Patent B2
US 10,397,602 · App. 16/119,280 · Granted Aug 27, 2019

Motion vector calculation method

Inventors: Satoshi Kondo (Kyoto, JP); Shinya Kadono (Fukuoka, JP); Makoto Hagai (Osaka, JP); Kiyofumi Abe (Osaka, JP)
Assignee: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
H04N19/52H04N19/103H04N19/105H04N19/107H04N19/127H04N19/136H04N19/137H04N19/159H04N19/16H04N19/172H04N19/176H04N19/30H04N19/423H04N19/46H04N19/51H04N19/513H04N19/573H04N19/577H04N19/58H04N19/583H04N19/61H04N19/70H04N19/184
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Quick Facts
Patent No.
US 10,397,602
App. No.
16/119,280
Filed
Aug 31, 2018
Granted
Aug 27, 2019
Kind
B2
Art Unit
2482
USPC
375/240.16
Abstract

When a block (MB 22 ) of which motion vector is referred to in the direct mode contains a plurality of motion vectors, 2 motion vectors MV 23 and MV 24 , which are used for inter picture prediction of a current picture (P 23 ) to be coded, are determined by scaling a value obtained from averaging the plurality of motion vectors or selecting one of the plurality of the motion vectors.

Claims (24)

1. A coding method for coding a current block included in a current picture in direct mode, the coding method comprising:

specifying a co-located block which is a block included in a second picture that is different from the current picture, the co-located block being located in the second picture at the same position that the current block is located in the current picture;

determining a first motion vector and a second motion vector of the current block for performing motion compensation on the current block, using a third motion vector which is a motion vector of the co-located block;

generating a first predictive image of the current block using the first motion vector of the current block and a second predictive image of the current block using the second motion vector of the current block;

generating a predictive image of the current block based on the first predictive image and the second predictive image;

generating a difference image of the current block between the current block and the predictive image of the current block; and

coding the difference image of the current block to obtain coded data of the current block,

wherein the co-located block is motion-compensated using a first motion vector corresponding to a first reference picture of the co-located block and a second motion vector corresponding to a second reference picture of the co-located block,

wherein, in the case where the first reference picture of the co-located block is stored in a long-term picture buffer and a second reference picture of the co-located block is stored in a short-term picture buffer, (i) the third motion vector is determined to be equal to the first motion vector of the co-located block, (ii) the first motion vector of the current block is determined to be equal to the third motion vector, and (iii) the second motion vector of the current block is determined to be a value of 0, and

wherein, in the case where the first reference picture of the co-located block is stored in a short-term picture buffer and the second reference picture of the co-located block is stored in a long-term picture buffer, (i) the third motion vector is determined to be equal to the first motion vector of the co-located block, and (ii) the first and second motion vectors of the current block are calculated by scaling the third motion vector based on a difference between display order information of the first reference picture of the current block, display order information of the second reference picture of the current block, and display order information of the current picture including the current block.

2. The coding method according to claim 1 ,

wherein the first reference picture of the co-located block is a reference picture selected from a first reference picture list in which lower identification numbers are assigned with priority to a reference picture located prior to the current picture in display order, and the second reference picture of the co-located block is a reference picture selected from a second reference picture list in which lower identification numbers are assigned with priority to a reference picture located posterior to the current picture in display order.

3. A coding apparatus for coding a current block included in a current picture in direct mode, the coding apparatus comprising:

a specifying unit operable to specify a co-located block which is a block included in a second picture that is different from the current picture, the co-located block being located in the second picture at the same position that the current block is located in the current picture;

a motion vector determining unit operable to determine a first motion vector and a second motion vector of the current block for performing motion compensation on the current block, using a third motion vector which is a motion vector of the co-located block;

a first and second predictive image generating unit operable to generate a first predictive image of the current block using the first motion vector of the current block and a second predictive image of the current block using the second motion vector of the current block;

a predictive image generating unit operable to generate a predictive image of the current block based on the first predictive image and the second predictive image;

a difference image generating unit operable to generate a difference image of the current block between the current block and the predictive image of the current block; and

a block image coding unit operable to code the difference image of the current block to obtain coded data of the current block,

wherein the co-located block is motion-compensated using a first motion vector corresponding to a first reference picture of the collocated block and a second motion vector corresponding to a second reference picture of the co-located block,

wherein, in the case where the first reference picture of the co-located block is stored in a long-term picture buffer and a second reference picture of the co-located block is stored in a short-term picture buffer, (i) the third motion vector is determined to be equal to the first motion vector of the co-located block, (ii) the first motion vector of the current block is determined to be equal to the third motion vector, and (iii) the second motion vector of the current block is determined to be a value of 0, and

wherein, in the case where the first reference picture of the co-located block is stored in a short-term picture buffer and the second reference picture of the co-located block is stored in a long-term picture buffer, (i) the third motion vector is determined to be equal to the first motion vector of the co-located block, and (ii) the first and second motion vectors of the current block are calculated by scaling the third motion vector based on a difference between display order information of the first reference picture of the current block, display order information of the second reference picture of the current block, and display order information of the current picture including the current block.

4. The coding apparatus according to claim 3 ,

wherein the first reference picture of the co-located block is a reference picture selected from a first reference picture list in which lower identification numbers are assigned with priority to a reference picture located prior to the current picture in display order, and the second reference picture of the co-located block is a reference picture selected from a second reference picture list in which lower identification numbers are assigned with priority to a reference picture located posterior to the current picture in display order.

Priority Claims (9)
JP 2002-118598 · Apr 19, 2002 · national
JP 2002-121053 · Apr 23, 2002 · national
JP 2002-156266 · May 29, 2002 · national
JP 2002-177889 · Jun 19, 2002 · national
JP 2002-193027 · Jul 2, 2002 · national
JP 2002-204713 · Jul 12, 2002 · national
JP 2002-262151 · Sep 6, 2002 · national
JP 2002-290542 · Oct 2, 2002 · national
JP 2002-323096 · Nov 6, 2002 · national
Continuity (12)
Continuation 15640829 · Jul 3, 2017
Continuation 15338880 · Oct 31, 2016
Continuation 14969715 · Dec 15, 2015
Continuation 14602696 · Jan 22, 2015
Division 14015281 · Aug 30, 2013
Division 13606612 · Sep 7, 2012
Continuation 12766254 · Apr 23, 2010
Continuation 11976750 · Oct 26, 2007
Continuation 10480928
Provisional Application 60378954 · May 10, 2002
Provisional Application 60378643 · May 9, 2002
Related Publication 20190014341A1 · Jan 10, 2019