• Title/Summary/Keyword: Video Transcoding

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Efficient MPEG-2 Video Transcoding with Scan Format Conversion (스캔 포맷 변환을 지원하는 효율적인 MPEG-2 동영상 트랜스코딩)

  • 송병철;천강욱
    • Proceedings of the IEEK Conference
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    • 2003.07e
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    • pp.2040-2043
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    • 2003
  • General-purpose MPEG-2 video transcoders must be able to achieve any conversion between 18 ATSC (Advanced television system committee) video formats for DTV (digital television), e.g., scan format, size format, and frame rate format conversion. Especially, scan format conversion is hard to implement because frame rate and size format conversion often happen together. This paper proposes a fast motion estimation(ME) algorithm for MPEG-2 video transcoding supporting scan format conversion. Firstly, we extract and compose a set of candidate motion vectors (MV's) from the input bit-stream to comply with the re-encoding format. Secondly, the best MV is chosen among several candidate MV's by using a weighted median selector. Simulation results show that the proposed ME algorithm reduces significantly transcoding complexity with a minor PSNR degradation.

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Efficient DCT Domain Transcoding for Video Transmission (영상 전송을 위한 효율적인 DCT 영역의 트랜스코딩)

  • Kim, Sung-Jin;Hwang, In-Kyung;Joung, Woong-Chan;Paik, Joon-Ki;Kim, Je-Woo;Song, Hyok;Paik, Jong-Ho
    • Journal of Broadcast Engineering
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    • v.6 no.2
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    • pp.121-130
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    • 2001
  • We propose an efficient DCT-domain video transcoding algorithm for flexible for bit-rate video communications. Video transcoding provides communication fiexibility by adaptively changing the bit-rate of compressed bit stream. During the transcoding process, adrift error is unavoidable because of the difference between reference images in the series of encoding and decoding. For solving the drift error problem, cascade pixel-domain transcoder (CPDT) has been proposed. CPDT, however, requires highly complex hardware and heavy computational overhead. In this paper we propose a DCT-domain transcoding technique, which enables efficient transcoding without any drift error. The proposed cascade DCT-domain transcoder (CDDT) is realized by new motion compensation and down-sampling methods in the DCT-domain.

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Fast Transcoding from H.264 to MPEG-4 (H.264에서 MPEG-4로 빠른 트랜스코딩)

  • 권혁균;이영렬
    • Journal of the Institute of Electronics Engineers of Korea CI
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    • v.41 no.6
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    • pp.91-99
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    • 2004
  • This paper proposed two transcodiing methods, which maintain the same spatio-temporal resolution and reduce a spatial resolution, to convert a H.264 video bitstream into an MPEG-4 video bitstream. When the H.264 video bitstream is transformed into the MPEG-4 video bitstream, the conversions between H.264 block types and MPEG-4 block types are performed by minimizing distortion and the ${\times}4$ block-based motion vector mapping is performed. The proposed two transcoding methods run 4.14~5.1 times as fast as the cascaded transcoding methods in MPEG-4 encoder side, while the PSNR (peak-signal-to ratio) is slightly degrade with maximum 0.3dB.

Robust Blind- Video Watermarking against MPEG-4 Scalable Video Coding and Multimedia Transcoding (MPEG-4 스케일러블 비디오 코딩 및 멀티미디어 트랜스코딩에 강인한 블라인드 비디오 워터마킹)

  • Yoon, Ji-Sun;Lee, Suk-Hwan;Song, Yoon-Chul;Jang, Bong-Joo;Kwon, Ki-Ryong;Kim, Min-Hwan
    • Journal of Korea Multimedia Society
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    • v.11 no.10
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    • pp.1347-1358
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    • 2008
  • A blind video watermarking scheme for providing safety, authenticity, and copyright protection is proposed in this paper, which is robust to MPEG-4 SVC and multimedia transcoding. In proposed method, embedding and detecting of watermark is performed based on base layer with considering spatial SVC. To be robust from temporal SVC, our method embeds repeatedly a permutated character with ordering number per one frame. Also for robustness from multimedia transcoding and FGS, the method is embedded watermark in low middle frequency of each frame adaptively based on DCT in ROI. Through experimental results, invisibility of the watermark is confirmed and robustness of the watermark against the spatial SVC, temporal SVC, FGS and video transcoding between MPEG-2 and MPEG-4 SVC is also verified.

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EFFICIENT VIDEO TRANSCODING IN THE GOP STRUCTURE CONVERSION (GOP 구조 변환에 있어서의 효율적인 트랜스코딩 기법)

  • Lee, Kang-Jun;Kim, Jeong-Jun;Jeong, Je-Chang
    • Proceedings of the KIEE Conference
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    • 2007.04a
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    • pp.292-294
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    • 2007
  • Recently, for satisfying many application demands such as coding delay, computing power, transporting channel characteristic, etc, many profiles are supported in video coding standards. Therefore, in transcoding between same standards or between other standards, the functional difference of profiles supported by application occur many problems. In this paper, transcoding MPEG-2 main profile to H.264/AVC baseline profile which has restriction in the number of reference frame is focused. In this case, the bidirectional prediction supported in MPEG-2 main profile is not supported in H.264/AVC baseline profile. Also, in the restriction of reference frame, motion vectors in the MPEG-2 decoder as predictor should be adjusted. In this paper, the proposed algorithm is based on the characteristic of which motion. vector is uniform according to the distance from reference frame. The adaptive search techniques through the determination of the uniformity extremely reduce the computational complexity.

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MPEG-based Transcoding for Scalable Video-on-Demand System

  • Naoki-Kobayashi;Satoshi-Ishibashi;Susumu-Ichinose
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 1999.06a
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    • pp.63.1-68
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    • 1999
  • MPEG-2 transcoding scheme is proposed as scalable transmission system for a video-on-demand system is described. In this system video contents encoded by MPEG-2 are transmitted to receiver terminals via communication lines that have different bit rate. A transcoding technique that directly converts a bit stream encoded by MPEG-2 into a lower coding rate stream without decoding is proposed. The transcoder called Trampeg includes size reduction and frame drop approach. The experimental results show that an MPEG-2 stream of 0 Mbps is able to be transcoded into a stream of 1.5 Mbps-300 Kbps.

Fast Motion Estimation Algorithm for Efficient MPEG-2 Video Transcoding with Scan Format Conversion (스캔 포맷 변환이 있는 효율적인 MPEG-2 동영상 트랜스코딩을 위한 고속 움직임 추정 기법)

  • 송병철;천강욱
    • Journal of Broadcast Engineering
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    • v.8 no.3
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    • pp.288-296
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    • 2003
  • ATSC (Advanced Television System Committee) has specified 18 video formats for DTV (Digital Television), e.g., scan format, size format, and frame rate format conversion. Effective MPEG-2 video transcoders should support any conversion between the above-mentioned formats. Scan format conversion Is hard to Implement because it may often induce frame rate and size format conversion together. Especially. because of picture type conversion caused by scan format conversion, the computational burden of motion estimation (ME) in transcoding becomes serious. This paper proposes a fast ME algorithm for MPEG-2 video transcoding supporting scan format conversion. Firstly, we extract and compose a set of candidate motion vectors (MVs) from the input bit-stream to comply with the re-encoding format. Secondly, the best MV is chosen among several candidate MVs by using a weighted median selector. Simulation results show that the proposed ME algorithm provides outstanding PSNR performance close to full search ME, while reducing the transcoding complexity significantly.

Balanced bitrate control of multiple videos in transcoding for multi-view service

  • Gankhuyag, Ganzorig;Choe, Yoonsik
    • International Journal of Internet, Broadcasting and Communication
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    • v.7 no.2
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    • pp.168-172
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    • 2015
  • In this paper, a balanced bitrate control in transcoding process based on video complexity measure for multi-view system which simultaneously shows multiple channels or video contents in single screen, is proposed. In order to consider the total quality of multiple video streams, the proposed algorithm reduces the complexity of multiple video stream and video quality differences at the same time by controlling bitrates of each stream by weighting when they are stitched for single screen. For the measure of complexity and quality differences between video streams, two different data: histogram of macroblock type and bitrate for each stream are used. The experimental result indicates that proposed algorithm decreases fluctuation of quality difference between videos in the multi-view system.

H.264/AVC to MPEG-2 Video Transcoding by using Motion Vector Clustering (움직임벡터 군집화를 이용한 H.264/AVC에서 MPEG-2로의 비디오 트랜스코딩)

  • Shin, Yoon-Jeong;Son, Nam-Rye;Nguyen, Dinh Toan;Lee, Guee-Sang
    • The Journal of the Korea institute of electronic communication sciences
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    • v.5 no.1
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    • pp.23-30
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    • 2010
  • The H.264/AVC is increasingly used in broadcast video applications such as Internet Protocol television (IPTV), digital multimedia broadcasting (DMB) because of high compression performance. But the H.264/AVC coded video can be delivered to the widespread end-user equipment for MPEG-2 after transcoding between this video standards. This paper suggests a new transcoding algorithm for H.264/AVC to MPEG-2 transcoder that uses motion vector clustering in order to reduce the complexity without loss of video quality. The proposed method is exploiting the motion information gathered during h.264 decoding stage. To reduce the search space for the MPEG-2 motion estimation, the predictive motion vector is selected with a least distortion of the candidated motion vectors. These candidate motion vectors are considering the correlation of direction and distance of motion vectors of variable blocks in H.264/AVC. And then the best predictive motion vector is refined with full-search in ${\pm}2$ pixel search area. Compared with a cascaded decoder-encoder, the proposed transcoder achieves computational complexity savings up to 64% with a similar PSNR at the constant bitrate(CBR).

Real-time Video Playback Method for N-Screen Service Based on Windows Azure (Windows Azure 기반의 N-스크린 서비스를 위한 실시간 동영상 재생 기법)

  • Lee, Won-Joo;Lim, Heon-Yong
    • Journal of the Korea Society of Computer and Information
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    • v.19 no.6
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    • pp.1-10
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    • 2014
  • In this paper, we propose a real-time video playback scheme for the N-Screen service based on Windows Azure. This scheme creates several playback blocks based on the performance of each node by non-uniform splitting of the original video. To reduce transcoding-time, it allocates the playback blocks to a corresponding node by transcoding the playback blocks. Through the simulation, we show that it is more effective to use real-time video playback for the N-screen service than the previous method. The proposed scheme splits an AVI format 300MB source video with non-uniform playback blocks. It allocates the playback blocks to the heterogeneous node of Windows Azure, the commercial cloud system and measures of transcoding-time by transcoding non-uniform playback blocks to mp4 and Flv format. As a result, the proposed scheme improves the performance of the N-screen service based on Windows Azure compared to the previous uniform split strategy.