with different types of fading effects, and select an
appropriate WP model. Results also show that it is
even better than the multi-pass WP encoding
strategy with reduced complexity.
Table 1: Distribution (%) of 8x8 blocks referencing f
0
,
TRFs, WRFs and being intra-encoded for “Foreman” at
QP20 using proposed scheme.
Frame No. Fading Effects f
0
TRFs
(f
1
to f
4
)
WRFs Intra
0-59 Fade-in from black 7.64 10.69 71.58 10.09
60-119 Fade-out to white 11.47 16.87 66.49 5.17
120-179 Fade-in from white 11.95 12.28 61.45 14.32
180-239 - 71.48 12.99 7.32 8.22
240-299 Fade-out to black 0.20 46.41 50.02 3.37
Table 2: BD-PSNR (dB) and BD-Bitrate (%) compared to
H.264 without WP.
Methods Akiyo Foreman M&D Silent Average
WP-
DC
BD-PSNR 1.44 0.72 1.46 1.15
1.19
BD-Bitrate -24.52 -14.79 -27.46 -21.70 -22.12
WP-
OFF
BD-PSNR 1.30 0.41 1.36 0.76
0.96
BD-Bitrate -21.50 -8.51 -24.52 -14.65 -17.30
WP-
LS
BD-PSNR 3.15 0.16 2.39 1.81
1.88
BD-Bitrate -48.98 -3.08 -41.84 -32.55 -31.61
WP-
LMS
BD-PSNR 3.54 1.60 2.87 2.71
2.68
BD-Bitrate -54.01 -31.01 -48.36 -44.06 -44.36
WP-
Multi-
Pass
BD-PSNR 3.83 1.87 3.11 2.87
2.92
BD-Bitrate -56.27 -35.34 -51.37 -45.68 -47.17
Pro-
posed
BD-PSNR 4.09 1.91 3.30 2.93
3.06
BD-Bitrate -58.59 -35.87 -52.63 -46.49 -48.40
Table 3: Change of Encoding Time (%) compared to
“WP-MultiPass”.
Methods Akiyo Foreman M&D Silent Average
Without WP -71.75 -77.42 -70.98 -74.25 -73.60
WP-DC -79.61 -80.37 -81.14 -80.27 -80.35
WP-OFF -78.70 -79.65 -81.02 -79.37 -79.68
WP-LS -82.39 -78.18 -81.33 -80.55 -80.61
WP-LMS -83.99 -82.25 -83.09 -82.40 -82.93
Proposed -71.58 -70.38 -70.86 -69.84 -70.66
ACKNOWLEDGEMENTS
The work described in this paper is partially
supported by the Centre for Signal Processing,
Department of EIE, PolyU and a grant from the
Research Grants Council of the HKSAR, China
(PolyU 5120/07E).
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