scispace - formally typeset
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
Reads0
Chats0
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.

read more

Citations
More filters
Journal ArticleDOI

Video loss recovery with FEC and stream replication

TL;DR: This paper proposes and study an effective feedback-free loss recovery scheme for layered video which combines forward error correction (FEC) and stream replication and presents a fast yet accurate approximation algorithm for receiver to make such decision.
Patent

Constrained Color Palette in a Color Space

TL;DR: In this paper, a technique for enabling display of a source color space on a display color space commences by first receiving source colour space information, which undergoes a conversion into a device independent color space, and a LUT or other matrix assigns output colors for the input colors corresponding to the specific display device color space.
Patent

Congestion control mechanism for streaming media

TL;DR: In this article, improved methods and apparatuses are provided in which Logarithm-based Rate Control algorithms are employed to better utilize available bandwidth and/or control and smooth the sending rate of the streaming media.
Journal ArticleDOI

Precoded OFDM with adaptive vector channel allocation for scalable video transmission over frequency-selective fading channels

TL;DR: This paper proposes to enhance the precoded OFDM system with adaptive vector channel allocation to provide stronger protection against errors to more important layers in the layered bit stream structure of scalable video.
Proceedings ArticleDOI

Macroblock-based progressive fine granularity scalable video coding

TL;DR: The experimental results show that the proposed macroblock-based PFGS coding scheme can effectively reduce the drifting errors at low bit rates, while providing further coding efficiency improvement over the FGS and the original PFGS scheme at moderate or high bit rates.
References
More filters
Journal ArticleDOI

Embedded image coding using zerotrees of wavelet coefficients

TL;DR: The embedded zerotree wavelet algorithm (EZW) is a simple, yet remarkably effective, image compression algorithm, having the property that the bits in the bit stream are generated in order of importance, yielding a fully embedded code.
Journal ArticleDOI

Error control and concealment for video communication: a review

TL;DR: In this paper, a review of error control and concealment in video communication is presented, which are described in three categories according to the roles that the encoder and decoder play in the underlying approaches.
Proceedings ArticleDOI

Receiver-driven layered multicast

TL;DR: The RLM protocol is described, its performance is evaluated with a preliminary simulation study that characterizes user-perceived quality by assessing loss rates over multiple time scales, and the implementation of a software-based Internet video codec is discussed.
Journal ArticleDOI

Low-complexity video coding for receiver-driven layered multicast

TL;DR: A layered video compression algorithm which, when combined with RLM, provides a comprehensive solution for scalable multicast video transmission in heterogeneous networks.
Journal ArticleDOI

Error-resilient video coding in the ISO MPEG-4 standard

TL;DR: In this paper, error resilience aspects of the video coding techniques that are standardized in the ISO MPEC-4 standard are described, including resynchronization strategies, data partitioning, reversible variable length codes (VLCs), and header extension codes.
Related Papers (5)