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Journal ArticleDOI

A framework for efficient progressive fine granularity scalable video coding

Feng Wu, +2 more
- 01 Mar 2001 - 
- Vol. 11, Iss: 3, pp 332-344
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TLDR
Experimental results show that the PFGS framework can improve the coding efficiency up to more than 1 dB over the FGS scheme in terms of average PSNR, yet still keeps all the original properties, such as fine granularity, bandwidth adaptation, and error recovery.
Abstract
A basic framework for efficient scalable video coding, namely progressive fine granularity scalable (PFGS) video coding is proposed. Similar to the fine granularity scalable (PGS) video coding in MPEG-4, the PFGS framework has all the features of FGS, such as fine granularity bit-rate scalability, channel adaptation, and error recovery. On the other hand, different from the PGS coding, the PFGS framework uses multiple layers of references with increasing quality to make motion prediction more accurate for improved video-coding efficiency. However, using multiple layers of references with different quality also introduces several issues. First, extra frame buffers are needed for storing the multiple reconstructed reference layers. This would increase the memory cost and computational complexity of the PFGS scheme. Based on the basic framework, a simplified and efficient PFGS framework is further proposed. The simplified PPGS framework needs only one extra frame buffer with almost the same coding efficiency as in the original framework. Second, there might be undesirable increase and fluctuation of the coefficients to be coded when switching from a low-quality reference to a high-quality one, which could partially offset the advantage of using a high-quality reference. A further improved PFGS scheme can eliminate the fluctuation of enhancement-layer coefficients when switching references by always using only one high-quality prediction reference for all enhancement layers. Experimental results show that the PFGS framework can improve the coding efficiency up to more than 1 dB over the FGS scheme in terms of average PSNR, yet still keeps all the original properties, such as fine granularity, bandwidth adaptation, and error recovery. A simple simulation of transmitting the PFGS video over a wireless channel further confirms the error robustness of the PFGS scheme, although the advantages of PFGS have not been fully exploited.

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Citations
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Performance Analysis of $n$ -Channel Symmetric FEC-Based Multiple Description Coding for OFDM Networks

TL;DR: The results show that at high SNR, the multiple description encoder does not need to fine-tune the optimization parameters of the system due to the correlated nature of the subcarriers, and FEC-based multiple description coding without temporal coding provides a greater advantage for smaller description sizes.
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Multiple Description Coding for Video Delivery

TL;DR: In this article, the authors describe principles in designing multiple description coding (MDC) video coders employing temporal prediction and present several predictor structures that differ in their tradeoffs between mismatch-induced distortion and coding efficiency.
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Resilient peer-to-peer streaming

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In-band motion compensated temporal filtering

TL;DR: A novel framework for fully scalable video coding that performs open-loop motion-compensated temporal filtering (MCTF) in the wavelet domain (in-band) is presented, and inspired by recent work on advanced prediction techniques, an algorithm for optimized multihypothesis temporal filtering is proposed.
References
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Proceedings ArticleDOI

Fine granularity scalability in MPEG-4 for streaming video

TL;DR: This paper describes the bitplane coding technique to achieve fine granularity scalability (FGS) in MPEG-4 and reports its coding efficiency results and discusses a few improvement methods.
Proceedings ArticleDOI

Bitplane coding of DCT coefficients for image and video compression

TL;DR: Bitplane coding of the DCT coefficients is a new coding scheme that provides a better performance than run_value coding under all conditions.
Journal ArticleDOI

A frequency scalable coding scheme employing pyramid and subband techniques

TL;DR: A conditional replacement scheme which switches adaptively between the pyramid and subband approaches at the coefficient level was studied and increases the overall coding efficiency of the scalable coder by up to 1 dB.
Proceedings ArticleDOI

A real-time scalable software video codec for collaborative applications over packet networks

TL;DR: This paper proposes a salable sofware-ody video codec architecture with motion est”hnation, which is suitable for r-tirne audio and video communication over packet network and includes various techniques to reduce compIefity.
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