2009•Unpublished venueRequires access

A video encoder preprocessing method based on transform and quantization for coding efficiency improvement

Jie Jia, Dae-Il Yoon, Hae Kwang Kim

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Abstract

Video coding standards, such as MPEG-4 Part II and H.264/AVC, follow a block-based hybrid coding design which employs inter picture prediction to exploit temporal dependency and transform coding to exploit spatial dependency. This paper presents a video encoder preprocessing method which is based on transform and quantization to improve coding efficiency performance. The proposed method is applicable for general video coding schemes. An implementation of the proposed method based on the H.264 is discussed in this paper. Simulation results report that an average of 0.8% bit rate reduction is obtained over the H.264 baseline profile without increment of complexity in decoding process.

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What this paper is about

Video coding standards, such as MPEG-4 Part II and H.264/AVC, follow a block-based hybrid coding design which employs inter picture prediction to exploit temporal dependency and transform coding to exploit spatial dependency. This paper presents a video encoder preprocessing method which is based on transform and quantization to improve coding efficiency performance. The proposed method is applicable for general video coding schemes. An implementation of the proposed method based on the H.264 is discussed in this paper. Simulation results report that an average of 0.8% bit rate reduction is obtained over the H.264 baseline profile without increment of complexity in decoding process.

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Available abstract

Video coding standards, such as MPEG-4 Part II and H.264/AVC, follow a block-based hybrid coding design which employs inter picture prediction to exploit temporal dependency and transform coding to exploit spatial dependency. This paper presents a video encoder preprocessing method which is based on transform and quantization to improve coding efficiency performance. The proposed method is applicable for general video coding schemes. An implementation of the proposed method based on the H.264 is discussed in this paper. Simulation results report that an average of 0.8% bit rate reduction is obtained over the H.264 baseline profile without increment of complexity in decoding process.

Key concepts: Computer science, Encoder, Coding (social sciences), Coding tree unit, Preprocessor, Quantization (signal processing), Context-adaptive variable-length coding, Context-adaptive binary arithmetic coding

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