• Title/Summary/Keyword: Motion Vector refinement

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A Real-time H.264 to MPEG-2 Transcoding for Ship to Shore Communication (선박-육지간 통신을 위한 실시간 H.264 to MPEG-2 트랜스코딩)

  • Son, Nam-Rye;Jeong, Min-A;Lee, Seong-Ro
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.48 no.1
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    • pp.90-102
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    • 2011
  • Recently, the grade of users using wireless communication services which transmits and re-transmits to the signal via the broadcasting satellite have a variety. However the ships not preparing of H.264 standard devices should not received the realtime data because the broadcasting stations have transmitted the compressed video data through the satellite communication. Therefore this paper proposes H.264 to MPEG-2 transcoding for the ships using MPEG-2 devices. Proposed method improves a speed and object quality in H.264 to MPEG-2 transcoding by analysis features of macroblock modes in H.264. In the Intra mode of P-frame, it proposes new method by computing coincidence proportion after comparing of Intra mode methods of H.264 and MPEG-2. In the Inter mode, it proposes a PMV(predictive motion vector) considering movement of motion vectors in H.264 decoder. we reuses a PMV directly as like the final MV in MPEG-2 encoder and refinements the MV after coincidence ratio comparing of variable motion vectors of H.264 and these of MPEG-2. The experimental results from proposed method show a considerable reduction in processing time, as much as 70% and 67% respectively, with a small objective quality reduction in PSNR.

Motion vector resampling and refinement technique for digital video transcoder (동영상 변환부호화기를 위한 모션벡터 재추출 및 정제 기법에 관한 연구)

  • Park, Kang-Seo;Yoon, Kyu-Seop;Park, Sang-Hui
    • Proceedings of the KIEE Conference
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    • 2000.07d
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    • pp.3160-3162
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    • 2000
  • 변화 부호화는 기존에 부호화 되어있는 영상의 비트율을 더 낮은 비트율의 영상으로 재 부호화하거나. 다른 부호화 표준으로 재 부호화 하는 기법이다. 변환 부호화기의 설계에서 가장 중요시되는 문제는 화질 향상과 부호화 속도의 향상이다. 변환 부호화기의 많은 응용분야에서 실시간 변환을 필요로 하기 때문에 변환 속도를 향상시키면서 화질을 높이는 방법이 연구되어 왔다. 비트율 변환비가 매우 클 때에나 표준화 방법의 목적 영상 사이즈가 다를 때엔 비트율의 변환과 함께 영상의 크기를 함께 변환(1/2)해 주어야할 필요가 있다. 본 논문에서는 이러한 경우에 적합한 변환 부호화기법을 제안한다. 우선 영상의 크기를 다운스케일링 해 준후, 기존 영상의 움직임 벡터들로부터 AWW기법을 이용해 1차 추정 벡터를 추출하여 속도를 향상시키고, 1차 추출 벡터 부근의 한정된 영역으로부터 움직임 벡터 추정과정을 거쳐 최종 추정 벡터를 정제하여 화질을 향상시킨다. 실험 결과 기존의 재 부호화 기법에 비해 속도가 향상됨을 확인 할 수 있었으며. AWW 기법에 비해 연산량은 조금 많아지나 정제 과정을 통하여 약 1dB 정도의 화질 향상이 있음을 확인할 수 있었다.

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Error Concealment Method for MPEG-4 Video in Wireless Environment (무선환경에서 MPEG-4 영상의 오류은닉 방법)

  • Park, Sun-Young;Song, Joon-Ho;Moon, Joo-Hee
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.39 no.6
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    • pp.641-651
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    • 2002
  • Recently, many advanced video application services over the mobile wireless networks have required a transcoder which can efficiently reduce the size of compressed video bitstreams. The transcoder can be worked in either the spatial domain or the DCT domain. In this paper, we propose a new fast hybrid-type transcoder which can efficiently reduce the frame size with keeping the visual quality. The proposed scheme consists of two major processes: a transform domain process and a spatial domain process. We also propose a scheme for coding mode selection and motion vector refinement. Experimental results show that our approach can reduce the computational complexity more than any other conventional spatial-domain transcoder with keeping the visual quality.

A New Fast Transcoder for Resizing Coded Video Sequences (부호화된 영상의 크기를 변환하는 새로운 고속 트랜스코더)

  • Park, Il-Woo;Cho, Yong-Gook;Myung, Jin-Su;Chae, Byung-Jo;Oh, Seoung-Jun;Yang, Chang-Mo;Cho, We-Duke
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.39 no.6
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    • pp.652-663
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    • 2002
  • Recently, many advanced video application services over the mobile wireless networks have required a transcoder which can efficiently reduce the size of compressed video bitstreams. The transcoder can be worked in either the spatial domain or the DCT domain. In this paper, we propose a new fast hybrid-type transcoder which can efficiently reduce the frame size with keeping the visual quality. The proposed scheme consists of two major processes: a transform domain process and a spatial domain process. We also propose a scheme for coding mode selection and motion vector refinement. Experimental results show that our approach can reduce the computational complexity more than any other conventional spatial-domain transcoder with keeping the visual quality.