• Title/Summary/Keyword: H.264 high profile

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Complexity Analysis of Internet Video Coding (IVC) Decoding

  • Park, Sang-hyo;Dong, Tianyu;Jang, Euee S.
    • Journal of Multimedia Information System
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    • v.4 no.4
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    • pp.179-188
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    • 2017
  • The Internet Video Coding (IVC) standard is due to be published by Moving Picture Experts Group (MPEG) for various Internet applications such as internet broadcast streaming. IVC aims at three things fundamentally: 1) forming IVC patents under a free of charge license, 2) reaching comparable compression performance to AVC/H.264 constrained Baseline Profile (cBP), and 3) maintaining computational complexity for feasible implementation of real-time encoding and decoding. MPEG experts have worked diligently on the intellectual property rights issues for IVC, and they reported that IVC already achieved the second goal (compression performance) and even showed comparable performance to even AVC/H.264 High Profile (HP). For the complexity issue, however, there has not been thorough analysis on IVC decoder. In this paper, we analyze the IVC decoder in view of the time complexity by evaluating running time. Through the experimental results, IVC is 3.6 times and 3.1 times more complex than AVC/H.264 cBP under constrained set (CS) 1 and CS2, respectively. Compared to AVC/H.264 HP, IVC is 2.8 times and 2.9 times slower in decoding time under CS1 and CS2, respectively. The most critical tool to be improved for lightweight IVC decoder is motion compensation process containing a resolution-adaptive interpolation filtering process.

Application Specific Processor Design for H.264 Decoder with a Configurable Embedded Processor

  • Han, Jin-Ho;Lee, Mi-Young;Bae, Young-Hwan;Cho, Han-Jin
    • ETRI Journal
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    • v.27 no.5
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    • pp.491-496
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    • 2005
  • An application specific processor for an H.264 decoder with a configurable embedded processor is designed in this research. The motion compensation, inverse integer transform, inverse quantization, and entropy decoding algorithm of H.264 decoder software are optimized. We improved the performance of the processor with instruction-level hardware optimization, which is tailored to configurable embedded processor architecture. The optimized instructions for video processing can be used in other video compression standards such as MPEG 1, 2, and 4. A significant performance improvement is achieved with high flexibility. Experimental results show that we could achieve 300% performance for the H.264 baseline profile level 2 decoder.

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MDT-based Compression Scheme in H.264/AVC (H.264/AVC에서 다차원 변환 기반의 동영상 압축 방법)

  • Jo, J.K.;Lee, Y.S.;Jeong, S.Y.;Lee, J.H.;Oh, S.J.
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2009.11a
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    • pp.285-289
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    • 2009
  • 본 논문에서는 현재 비디오 코덱 표준인 H.264/AVC 에서 사용하고 있는 정수형 변환을 두 번 사용하는 다차원 변환 즉, MDT(Multi-Dimensional Transform) 을 제안한다. 제안하는 알고리듬은 H.264/AVC 7가지 인터 모드중에서 $16{\times}16$, $8{\times}16$, $16{\times}8$블록 모드에 적용된다. H.264/AVC에서 사용하는 정수형 변환을 $4{\times}4$블록 단위로 적용하고 인접하는 4개의 $4{\times}4$블록으로부터 같은 주파수 위치의 계수값을 모아서 16개의 $4{\times}1$벡터 변환을 추가로 수행하는 방법이다. MDT를 수행함으로써 H.264/AVC 표준에서 사용되는 변환이 가지는 예측오차를 유지하면서 공간적 중복도를 추가로 줄일 수 있다. MDT 된 계수들을 정수형으로 양자화하고 양자화된 계수값을 효율적으로 주사하는 방법을 제안하여 압축효율을 높였다. 제안된 알고리듬의 제안하는 MDT 기반 방법은 H.264/AVC High profile 표준보다 평균 3.00%의 비트 절감을 보였다.

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Fast Motion Estimation Algorithm for MPEG-4 to H.264 Transcoder

  • Han, Jong-Ki;Seo, Chan-Won
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.33 no.6C
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    • pp.459-470
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    • 2008
  • In this paper, we propose a fast ME (motion estimation) algorithm for MPEG-4 to H.264 Transcoder. Whereas 2 modes ($8{\times}8$, $16{\times}16$) are used for ME in MPEG-4 simple profile, ME using 7 modes is supported for further enhanced coding efficiency in H.264. The transcoding speed is affected dominantly by the computational complexity of encoder part in transcoder, where ME module of H.264 encoder has high complexity due to using 7 modes. In order to increase the speed of transcoding between MPEG-4 and H.264, we use 3 PMVs (predicted motion vectors) and the mode information of MBs (macroblocks) provided from the decoder part of transcoder. Since the proposed 3 PMVs are very close to an optimal motion vector, and we consider only some restricted modes according to the MB information transferred from decoder part, the proposed scheme can speed up the transcoding procedure without loss of image quality. We show experimental results which demonstrate the effectiveness of the proposed algorithm, where performance of our scheme is compared with that of the conventional fast algorithm for H.264.

An Efficient VLC Table Prediction Scheme for H.264 Using Weighting Multiple Reference Blocks (H.264 표준에서 가중된 다중 참조 블록을 이용한 효율적인 VLC 표 예측 방법)

  • Heo, Jin;Oh, Kwan-Jung;Ho, Yo-Sung
    • Proceedings of the IEEK Conference
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    • 2005.11a
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    • pp.39-42
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    • 2005
  • H.264, a recently proposed international video coding standard, has adopted context-based adaptive variable length coding (CAVLC) as the entropy coding tool in the baseline profile. By combining an adaptive variable length coding technique with context modeling, we can achieve a high degree of redundancy reduction. However, CAVLC in H.264 has weakness that the correct prediction rate of the variable length coding (VLC) table is low in a complex area, such as the boundary of an object. In this paper, we propose a VLC table prediction scheme considering multiple reference blocks; the same position block of the previous frame and the neighboring blocks of the current frame. The proposed algorithm obtains the new weighting values considering correctness of the VLC table for each reference block. Using this method, we can enhance the prediction rate of the VLC table and reduce the bit-rate.

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The Efficient Coding Tools based 3-Dimensional Transform in H.264/AVC (H.264/AVC에서 3차원 변환에 기반을 둔 효율적인 동영상 압축 방법)

  • Jo, Jae-Kyu;Cho, Hye-Jeong;Lee, Jin-Ho;Jeong, Se-Yoon;Ahn, Chang-Beom;Oh, Seoung-Jun
    • Journal of Broadcast Engineering
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    • v.15 no.3
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    • pp.434-453
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    • 2010
  • In this paper, we propose 3DTE(3-Dimensional Transform Environment) that is based on 3DT(Dimensional Transform) that performs 2-dimensional integer DCT(Discrete Cosine Transform) based on $4{\times}4$ block and 1-dimensional integer DCT based on $4{\times}1$ block after collecting same frequency coefficients in neighboring $4{\times}4$ block and supports it's additional coding tools for high performance. The transform of 3DT can keep prediction error by using $4{\times}4$ block and reduce spatial redundancy additionally. The proposed 3DTE can provide coding tools to improve the coding efficiency with using 3DT. The performance of 3DTE compared to JM11.0 is average 3.58% and 5.40% bit savings for all test sequences and HD sequences, respectively, with keeping subjective video quality in High profile.

Efficient Block Mode Decision and Prediction Mode Selection for Fast Intra Prediction in H.264/AVC High Profile (H.264/AVC 하이 프로파일의 고속 화면 내 예측을 위한 효율적인 블록 모드 결정과 예측 모드 선택)

  • Kim, Tae-Ho;Jeong, Je-Chang
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2011.07a
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    • pp.574-577
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    • 2011
  • H.264/AVC는 휘도 신호 $4{\times}4$ 블록을 위하여 9개의 화면 내 예측모드를 사용한다. 예측 모드는 8개의 방향성을 가진 모드와 하나의 비방향성 DC 모드가 있다. 휘도 신호 $16{\times}16$ 블록에서는 4가지의 예측 모드가 있으며 색차 신호 $8{\times}8$ 에서도 4개의 예측모드를 사용한다. 이러한 예측 모드들 중 최적의 예측 모드를 선택하기 위하여, 부호화기는 선택 가능한 모든 예측 모드의 율-왜곡 비용을 계산한 후, 최적의 율-왜곡 비용을 가진 예측 모드를 사용하여 부호화를 수행한다. 따라서 H.264/AVC의 화면 내 예측 과정은 많은 계산 복잡도를 가진다. 특히 하이 프로파일에서는 휘도 신호 $8{\times}8$ 블록이 화면 내 예측을 위해서 고려되므로 더욱 많은 계산 복잡도를 요구한다. 이에 본 논문은 H.264/AVC 하이 프로파일의 화면 내 예측의 부호화 계산 복잡도를 줄이는 방법을 제안한다. 현재 매크로 블록의 분산을 계산한 후, 이를 이용하여 율-왜곡 최적화에 후보로 사용되어지는 블록 모드를 결정하고, 각 블록 모드에서 제공하는 예측 모드들을 효율적으로 선택하는 방법을 연구 개발하였다. 제안된 방법은 기존 H.264/AVC 참조 소프트웨어인 JM13.1 부호화 시간 대비 약 83%의 연산시간이 감소하는 결과를 보였다.

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A Blind Watermarking Algorithm using CABAC for H.264/AVC Main Profile (H.264/AVC Main Profile을 위한 CABAC-기반의 블라인드 워터마킹 알고리즘)

  • Seo, Young-Ho;Choi, Hyun-Jun;Lee, Chang-Yeul;Kim, Dong-Wook
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.2C
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    • pp.181-188
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    • 2007
  • This paper proposed a watermark embedding/extracting method using CABAC(Context-based Adaptive Binary Arithmetic Coding) which is the entropy encoder for the main profile of MPEG-4 Part 10 H.264/AVC. This algorithm selects the blocks and the coefficients in a block on the bases of the contexts extracted from the relationship to the adjacent blocks and coefficients. A watermark bit is embedded without any modification of coefficient or with replacing the LSB(Least Significant Bit) of the coefficient with a watermark bit by considering both the absolute value of the selected coefficient and the watermark bit. Therefore, it makes it hard for an attacker to find out the watermarked locations. By selecting a few coefficients near the DC coefficient according to the contexts, this algorithm satisfies the robustness requirement. From the results from experiments with various kinds and various strengths of attacks the maximum error ratio of the extracted watermark was 5.02% in maximum, which makes certain that the proposed algorithm has very high level of robustness. Because it embeds the watermark during the context modeling and binarization process of CABAC, the additional amount of calculation for locating and selecting the coefficients to embed watermark is very small. Consequently, it is highly expected that it is very useful in the application area that the video must be compressed right after acquisition.

Enhanced RGB Video Coding Based on Correlation in the Adjacent Block (인접블록의 상관관계에 기반한 RGB video coding 개선 알고리즘)

  • Kim, Yang-Soo;Jeong, Jin-Woo;Choe, Yoon-Sik
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.58 no.12
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    • pp.2538-2541
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    • 2009
  • H.264/AVC High 4:4:4 Intra/Predictive profiles supports RGB 4:4:4 sequences for high fidelity video. RGB color planes rather than YCbCr color planes are preferred by high-fidelity video applications such as digital cinema, medical imaging, and UHDTV. Several RGB coding tools have therefore been developed to improve the coding efficiency of RGB video. In this paper, we propose a new method to extract more accurate correlation parameters for inter-plane prediction. We use a searching method to determine the matched macroblock (MB) that has a similar inter-color relation to the current MB. Using this block, we can infer more accurate correlation parameters to predict chroma MB from luma MB. Our proposed inter-plane prediction mode shows an average bits saving of 15.6% and a PSNR increase of 0.99 dB compared with H.264 high4:4:4 intra-profile RGB coding. Furthermore, extensive performance evaluation revealed that our proposed algorithm has better coding efficiency than existing algorithms..

A Fast Intra Skip Detection Algorithm for H.264/AVC Video Encoding

  • Kim, Byung-Gyu;Kim, Jong-Ho;Cho, Chang-Sik
    • ETRI Journal
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    • v.28 no.6
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    • pp.721-731
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    • 2006
  • A fast intra skip detection algorithm based on the ratedistortion (RD) cost for an inter frame (P-slices) is proposed for H.264/AVC video encoding. In the H.264/AVC coding standard, a robust rate-distortion optimization technique is used to select the best coding mode and reference frame for each macroblock (MB). There are three types of intra predictions according to profiles. These are $16{\times}16$ and $4{\times}4$ intra predictions for luminance and an $8{\times}8$ intra prediction for chroma. For the high profile, an $8{\times}8$ intra prediction has been added for luminance. The $4{\times}4$ prediction mode has 9 prediction directions with 4 directions for $16{\times}16$ and $8{\times}8$ luma, and $8{\times}8$ chrominance. In addition to the inter mode search procedure, an intra mode search causes a significant increase in the complexity and computational load for an inter frame. To reduce the computational load of the intra mode search at the inter frame, the RD costs of the neighborhood MBs for the current MB are used and we propose an adaptive thresholding scheme for the intra skip extraction. We verified the performance of the proposed scheme through comparative analysis of experimental results using joint model reference software. The overall encoding time was reduced up to 32% for the IPPP sequence type and 35% for the IBBPBBP sequence type.

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