A novel highly efficient macroblock-based progressive fine granularity scalable (MBPFGS) video coding scheme that can optimally balance drifting errors and coding efficiency is proposed in this paper. In order to improve coding efficiency, the existing PFGS video coding scheme uses a set of high quality references to predict the enhancement layers. However, potential drifting errors may arise since high quality references may not always be available at the decoder when channel bandwidth fluctuates. To solve this problem, we first analyze when drifting errors occur and how they will propagate. Then, an iterative model is established to estimate the drifting errors at the encoder. Meanwhile, three new INTER modes are proposed for the coding o...
We address the problem of real-time mode decisions for enhance-ment layer coding in the context of f...
[[abstract]]A novel error resilience coding technique, named Multiple Description Scalar Quantizatio...
[[abstract]]An architecture of a fine granularity scalable (FGS) codec has an encoder and a decoder ...
A novel highly efficient macroblock-based progressive fine granularity scalable (MBPFGS) video codin...
This paper investigates the drifting problem in Progressive Fine Granularity Scalable (PFGS) video c...
This paper addresses the problem of optimal rate allocation for the macroblock-based Progressive Fin...
ABSTRACT: In this article, we present a scalable video compression algorithm to deliver higher compr...
This paper proposes a complete scheme of a ratedistortion optimal progressive fine granularity scala...
This paper proposes a unified efficient and universal scalable video coding framework that supports ...
In this paper, we propose a new algorithm, which utilizes the enhancement layer prediction to furthe...
Due to the character of the original source materials and the nature of batch digitization, quality ...
In this work we present an efficient fine granular scalable video compression scheme which supports ...
In this work we present an efficient fine granular scalable video compression scheme which supports ...
Abstract—This paper proposes a fine granularity scalable (FGS) coding using cycle-based leaky predic...
[[abstract]]MPEG-4 fine granularity coding (FGS) has been introduced as a standard video coding tool...
We address the problem of real-time mode decisions for enhance-ment layer coding in the context of f...
[[abstract]]A novel error resilience coding technique, named Multiple Description Scalar Quantizatio...
[[abstract]]An architecture of a fine granularity scalable (FGS) codec has an encoder and a decoder ...
A novel highly efficient macroblock-based progressive fine granularity scalable (MBPFGS) video codin...
This paper investigates the drifting problem in Progressive Fine Granularity Scalable (PFGS) video c...
This paper addresses the problem of optimal rate allocation for the macroblock-based Progressive Fin...
ABSTRACT: In this article, we present a scalable video compression algorithm to deliver higher compr...
This paper proposes a complete scheme of a ratedistortion optimal progressive fine granularity scala...
This paper proposes a unified efficient and universal scalable video coding framework that supports ...
In this paper, we propose a new algorithm, which utilizes the enhancement layer prediction to furthe...
Due to the character of the original source materials and the nature of batch digitization, quality ...
In this work we present an efficient fine granular scalable video compression scheme which supports ...
In this work we present an efficient fine granular scalable video compression scheme which supports ...
Abstract—This paper proposes a fine granularity scalable (FGS) coding using cycle-based leaky predic...
[[abstract]]MPEG-4 fine granularity coding (FGS) has been introduced as a standard video coding tool...
We address the problem of real-time mode decisions for enhance-ment layer coding in the context of f...
[[abstract]]A novel error resilience coding technique, named Multiple Description Scalar Quantizatio...
[[abstract]]An architecture of a fine granularity scalable (FGS) codec has an encoder and a decoder ...