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13th Meeting: Marrakech, January 2019 2018-12-28 10:09
CE4: Enhanced Merge with MVD (Test 4.4.4)
Abstract
This contribution reports a result of CE4.4.4 enhanced merge with MVD (MMVD). In CE4.4.4, four tests are conducted. Test 4.4.4.a uses diagonal candidate, test 4.4.4.b uses mutiple distance lists, test 4.4.4.c is a combination of test a and test b, and test 4.4.4.d is test c with full-pel position for large distance. It is reported that the bd-rate is -0.28% with 106% encoding time under RA condition and 0.00% with 103% encoding time under LDB condition for test 4.4.4.d. It is proposed to adopt test 4.4.4.d method into the next VVC draft / VTM.
JVET-M0060 CE4: Enhanced Merge with MVD (Test 4.4.4) [T. Hashimoto, E. Sasaki, T. Ikai (Sharp)]

Directional candidates

Directional candidates are used in addition to horizontal / vertical candidates of VTM-3.0. The directional candidates are shown as below.

Motion direction (proposal)

Direction IDX

000

001

010

011

100

101

110

111

x-axis

+2

–2

0

0

+1

-1

-1

+1

y-axis

0

0

+2

–2

+1

-1

+1

-1

Note: the value of x-axis and y-axis of diagonal direction are half of that of horizontal and vertical direction respectively.

Multiple distance lists

Two set of distance lists are proposed. The selection flag is context coded so that it applies in an optimal way. The distance list is shown as follows.

First distance list

Distance IDX

0

1

2

3

Pixel distance

1/4-pel

1/2-pel

3/4-pel

5/4-pel

Second distance list

Distance IDX

0

1

2

3

Pixel distance

1-pel

2-pel

4-pel

8-pel

Full-pel position for large range

In test d, motion vectors are converted into an integer position if the distance is large. Since integer position doesn’t need additional pixels for interpolation, necessary area size for MMVD encoding / decoding decreases, which would reduce memory band requirement. When the second distance list is selected and distance index is larger than 1, the motion vectors are converted into an integer position.

Decisions
In test d, motion vectors are converted into an integer position if the distance is large. Since integer position doesn’t need additional pixels for interpolation, necessary area size for MMVD encoding / decoding decreases, which would reduce memory band requirement. When the second distance list is selected and distance index is larger than 1, the motion vectors are converted into an integer position.
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