• Title/Summary/Keyword: H.264/AVC video

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A New Rate Control Scheme for H.264/AVC Video Using Pseudo Encoding Model (근사 인코딩 기법을 이용한 H.264/AVC 비트율 제어 알고리즘)

  • Lee, Rok-Kyu;Jeon, Gwang-Gil;Jeong, Je-Chang
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2008.11a
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    • pp.139-142
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    • 2008
  • 본 논문에서는 근사 인코딩 기법을 이용한 H.264/AVC 비디오 코덱에서의 비트율 제어 알고리즘을 제안한다. H.264는 기존의 동영상 압축 표준보다 월등한 압축 성능을 나타내지만, 구조적 복잡성으로 인해 비트율 제어 측면에서는 과거에 제안된 H.264를 위한 비트율 제어 알고리즘들의 성능은 기대에 미치지 못하였다. 제안된 알고리즘은 근사 인코딩 기법을 사용하여 실제 H.264 인코딩이 이루어지기 이전에 향후 발생될 인코딩 비트를 미리 예측할 수 있고, 비트율 제어에서 매우 높은 중요성을 차지하는 프레임의 복잡도 예측에서 우수한 성능을 나타낸다. 알고리즘의 연산량 측면에서도 제안된 근사 인코딩 기법은 간단한 구조로 이루어져 있어 장점을 나타낸다. 본 논문에서는 DCT 영역에서의 각 프레임의 zero의 개수를 분석하여 얻어낸 영상의 특성을 비트율 제어에 활용한다. 실험결과는 제안된 알고리즘이 H.264 레퍼런스 소프트웨어의 가장 최신 버전인 JM12.2 환경에서 기존의 알고리즘에 비해 우수한 성능을 나타낸다는 것을 알 수 있다.

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Adaptive Coefficient Scanning for Inter-prediction Mode in H.264/AVC (H.264/AVC에서 화면 간 예측 모드의 압축 성능 향상을 위한 적응적인 계수 탐색 방법)

  • Baek, Seung-Jin;Park, Chun-Su;Ko, Sung-Jea
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.46 no.3
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    • pp.89-95
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    • 2009
  • H.264/AVC is the state-of-the-art video compression standard which achieves high coding efficiency compared with the previous standards. H.264/AVC adopts zig-zag scanning in order to encode quantized transform coefficients in a block. However, its performance is not satisfactory because all blocks are scanned in the fixed order without considering the characteristics of blocks. This paper presents an adaptive coefficient scanning method for improving inter coding efficiency in H.264/AVC. In the proposed method, the coefficient scanning order for each prediction mode is adaptively controlled based on the information of previously-coded blocks. The experimental results show that the proposed coefficient scanning method improves the coding efficiency about 2.29% for high-quality HD sequences.

Efficient Intra Predictor Design for H.264/AVC Decoder (H.264/AVC 복호기를 위한 효율적인 인트라 예측기 설계)

  • Kim, Ok;Ryoo, Kwangki
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2009.10a
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    • pp.175-178
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    • 2009
  • H.264/AVC is a video coding standard of ITU-T and ISO/IEC, and widely spreads its application due to its high compression ratio more than twice that of MPEG-2 and high image quality. In this paper, we explained Intra Prediction in H.264/AVC, which is able to achieve higher compressing efficiency from correlation removal of adjacent samples in spatial domain, and proposed efficient Intra Predictor architecture design for H.264/AVC decoder. The proposed system reduced computation cycle using processing element and precomputation processing element and also reduced the number of access to external memory using efficient register. We designed the proposed system with Verilog-HDL and verified with suitable test vector. The proposed Intra Predictor achieved about 60% cycle reduction comparing with existing Intra Predictors.

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Efficient Intra Prediction Mode Decision Using DCT Coefficients for the Conversion of MPEG-2 to H.264 Standard in Ubiquitous Communication Environment (유비쿼터스 통신 환경에서 MPEG-2의 H.264로의 Transcoding 과점에서 DCT 계수를 이용한 효율적인 인트라 예측 모드 결정 기법)

  • Kim, Yong-Jae;Lee, Chang-Woo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.33 no.9C
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    • pp.697-703
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    • 2008
  • The H.264/AVC video coding standard provides higher coding efnciency compared to the conventional MPEG-2 standard. Since a lot of videos have been encoded using MPEG-2, the format conversion from MPEG-2 to H.264 is essential. In this paper, we propose an efficient method for the conversion of DCT coefficients to H.264/AVC transform coefficients. This conversion is essential, since $8{\times}8$ DCT and $4{\times}4$ integer transform are used in MPEG-2 and H.264/AVC, respectively. The mathematical analysis and computer simulation show that the computational complexity of the proposed algorithm is reduced compared to the conventional algorithm, while the loss caused by the conversion is negligible.

An Improved Motion/Disparity Vector Prediction for Multi-view Video Coding (다시점 비디오 부호화를 위한 개선된 움직임/변이 벡터 예측)

  • Lim, Sung-Chang;Lee, Yung-Lyul
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.45 no.2
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    • pp.37-48
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    • 2008
  • Generally, a motion vector and a disparity vector represent the motion information of an object in a single-view of camera and the displacement of the same scene between two cameras that located spatially different from each other, respectively. Conventional H.264/AVC does not use the disparity vector in the motion vector prediction because H.264/AVC has been developed for the single-view video. But, multi-view video coding that uses the inter-view prediction structure based on H.264/AVC can make use of the disparity vector instead of the motion vector when the current frame refers to the frame of different view. Therefore, in this paper, we propose an improved motion/disparity vector prediction method that consists of global disparity vector replacement and extended neighboring block prediction. From the experimental results of the proposed method compared with the conventional motion vector prediction of H.264/AVC, we achieved average 1.07% and 1.32% of BD (Bjontegaard delta)-bitrate saving for ${\pm}32$ and ${\pm}64$ of global vector search range, respectively, when the search range of the motion vector prediction is set to ${\pm}16$.

Fast Ultra-mode Selection Algorithm for H.264/AVC Video Coding with Low Complexity (저 복잡도의 H.264/AVC를 위한 고속 인트라 모드 선택 기법)

  • Kim, Jong-Ho;Jeong, Je-Chang
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.30 no.11C
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    • pp.1098-1107
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    • 2005
  • The emerging H.264/AVC video coding standard improves coding performance significantly by adopting many advanced techniques. This is achieved at the expense of great increasing encoder complexity. Specifically the intra prediction using RDO examines all possible combinations of coding modes, which depend on spatial directional correlation with adjacent blocks. For 4${\times}$4 luma blocks, there are 9 modes, and for 16${\times}$16 luma and 8${\times}$8 chroma blocks, there are 4 modes, respectively. Therefore the number of mode combinations for each macroblock is 592. This paper presents a method to reduce the RDO complexity using simple directional masks and neighboring modes. According to the proposed method, we reduce the number of mode combinations to 132 at the most. Experimental results show the proposed method reduces the encoding time up to $70\%$ with negligible loss of PSNR and bitrate increase compared to the H.264/AVC exhaustive search.

Adaptive Inter-Layer Prediction for Intra Texture on H.264 Scalable Video Coding (H.264 기반 스케일러블 비디오 부호화에서 인트라 블럭에 대한 적응적인 계층간 예측 연구)

  • Oh, Hyung-Suk;Park, Seong-Ho;Cheon, Min-Su;Kim, Won-Ha
    • Proceedings of the KIEE Conference
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    • 2005.10b
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    • pp.195-197
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    • 2005
  • In the scalable extension of H.264/AVC, spatial scalability is provided residual information as encoding layered spatial resolution between layers. We use the inter-layer prediction to remove this redundancy. In the inter-layer prediction, as the prediction we can use the signal that is the upsampled signal of the lower resolution layer. In this case, coding efficiency can be different from optimal prediction by kinds of interpolation filter. This paper indicates technique to choose the interpolation filter and to enhance coding efficiency for finding more correct prediction in intra macroblock.

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A Macroblock-Layer Rate Control for H.264/AVC Using Quadratic Rate-Distortion Model (2차원 비트율-왜곡 모델을 이용한 매크로블록 단위 비트율 제어)

  • Son, Nam-Rae;Lee, Guee-Sang;Yim, Chang-Hoon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.9C
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    • pp.849-860
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    • 2007
  • Because the H.264/AVC standard adopts the variable length coding algorithm, the rate of encoded video bitstream fluctuates a lot as time flows, though its compression efficiency is superior to that of existing standards. When a video is transmitted in real-time over networks with fixed low-bandwidth, it is necessary to control the bit rate which is generated from encoder. Many existing rate control algorithms have been adopting the quadratic rate-distortion model which determines the target bits for each frame. We propose a new rate control algorithm for H.264/AVC video transmission over networks with fixed bandwidth. The proposed algorithm predicts quantization parameter adaptively to reduce video distortion using the quadratic rate-distortion model, which uses the target bit rate and the mean absolute difference for current frame considering pixel difference between macroblocks in the previous and the current frame. On video samples with high motion and scene change cases, experimental results show that (1) the proposed algorithm adapts the encoded bitstream to limited channel capacity, while existing algorithms abruptly excess the limit bit rate; (2) the proposed algorithm improves picture quality with $0.4{\sim}0.9dB$ in average.

Adaptive Rate Control Based on Statistical Modeling in Frame-layer for H.264/AVC (H.264/AVC를 위한 통계 모델 기반 프레임 단위의 비트율 제어 기법)

  • Kim, Myoung-Jin;Hong, Min-Cheol
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.35 no.11C
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    • pp.917-928
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    • 2010
  • In this paper, we propose an efficient and adaptive rate control in Frame-layer for H.264/AVC. For given QP, bits according to video characteristics, and current frame is close correlation between the adjacent frames. Using the statistical characteristic, we obtain change of occurrence bit about QP to apply the bit amount by QP from the video characteristic and applied in the estimated bit amount of the each unit of current frame. In addition, we use weight with QP and occurrence bit amount that is statistical information of encoded previous frames. Simulation results show that the proposed rate control scheme could not only achieves time saving of more than 99% over existing rate control algorithm, but also increase the average PSNR of reconstructed video for around 0.02~0.43 dB in all the sequences.