Multiple Adaptations and Content-Adaptive FEC Using Parameterized RD Model for Embedded Wavelet Video

<p/> <p>Scalable video coding (SVC) has been an active research topic for the past decade. In the past, most SVC technologies were based on a coarse-granularity scalable model which puts many scalability constraints on the encoded bitstreams. As a result, the application scenario of adap...

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Main Authors: Yu Ya-Huei, Ho Chien-Peng, Tsai Chun-Jen
Format: Article
Language:English
Published: SpringerOpen 2007-01-01
Series:EURASIP Journal on Advances in Signal Processing
Online Access:http://asp.eurasipjournals.com/content/2007/070914
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spelling doaj-84ee70d1844e415190287a61e73774fd2020-11-24T22:10:24ZengSpringerOpenEURASIP Journal on Advances in Signal Processing1687-61721687-61802007-01-0120071070914Multiple Adaptations and Content-Adaptive FEC Using Parameterized RD Model for Embedded Wavelet VideoYu Ya-HueiHo Chien-PengTsai Chun-Jen<p/> <p>Scalable video coding (SVC) has been an active research topic for the past decade. In the past, most SVC technologies were based on a coarse-granularity scalable model which puts many scalability constraints on the encoded bitstreams. As a result, the application scenario of adapting a preencoded bitstream multiple times along the distribution chain has not been seriously investigated before. In this paper, a model-based multiple-adaptation framework based on a wavelet video codec, MC-EZBC, is proposed. The proposed technology allows multiple adaptations on both the video data and the content-adaptive FEC protection codes. For multiple adaptations of video data, rate-distortion information must be embedded within the video bitstream in order to allow rate-distortion optimized operations for each adaptation. Experimental results show that the proposed method reduces the amount of side information by more than 50% on average when compared to the existing technique. It also reduces the number of iterations required to perform the tier-2 entropy coding by more than 64% on average. In addition, due to the nondiscrete nature of the rate-distortion model, the proposed framework also enables multiple adaptations of content-adaptive FEC protection scheme for more flexible error-resilient transmission of bitstreams.</p> http://asp.eurasipjournals.com/content/2007/070914
collection DOAJ
language English
format Article
sources DOAJ
author Yu Ya-Huei
Ho Chien-Peng
Tsai Chun-Jen
spellingShingle Yu Ya-Huei
Ho Chien-Peng
Tsai Chun-Jen
Multiple Adaptations and Content-Adaptive FEC Using Parameterized RD Model for Embedded Wavelet Video
EURASIP Journal on Advances in Signal Processing
author_facet Yu Ya-Huei
Ho Chien-Peng
Tsai Chun-Jen
author_sort Yu Ya-Huei
title Multiple Adaptations and Content-Adaptive FEC Using Parameterized RD Model for Embedded Wavelet Video
title_short Multiple Adaptations and Content-Adaptive FEC Using Parameterized RD Model for Embedded Wavelet Video
title_full Multiple Adaptations and Content-Adaptive FEC Using Parameterized RD Model for Embedded Wavelet Video
title_fullStr Multiple Adaptations and Content-Adaptive FEC Using Parameterized RD Model for Embedded Wavelet Video
title_full_unstemmed Multiple Adaptations and Content-Adaptive FEC Using Parameterized RD Model for Embedded Wavelet Video
title_sort multiple adaptations and content-adaptive fec using parameterized rd model for embedded wavelet video
publisher SpringerOpen
series EURASIP Journal on Advances in Signal Processing
issn 1687-6172
1687-6180
publishDate 2007-01-01
description <p/> <p>Scalable video coding (SVC) has been an active research topic for the past decade. In the past, most SVC technologies were based on a coarse-granularity scalable model which puts many scalability constraints on the encoded bitstreams. As a result, the application scenario of adapting a preencoded bitstream multiple times along the distribution chain has not been seriously investigated before. In this paper, a model-based multiple-adaptation framework based on a wavelet video codec, MC-EZBC, is proposed. The proposed technology allows multiple adaptations on both the video data and the content-adaptive FEC protection codes. For multiple adaptations of video data, rate-distortion information must be embedded within the video bitstream in order to allow rate-distortion optimized operations for each adaptation. Experimental results show that the proposed method reduces the amount of side information by more than 50% on average when compared to the existing technique. It also reduces the number of iterations required to perform the tier-2 entropy coding by more than 64% on average. In addition, due to the nondiscrete nature of the rate-distortion model, the proposed framework also enables multiple adaptations of content-adaptive FEC protection scheme for more flexible error-resilient transmission of bitstreams.</p>
url http://asp.eurasipjournals.com/content/2007/070914
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