2006Unpublished venueRequires access

3D Audio-Video Processing On The Terrestrial DMB

Sukhee Cho, Kugjin Yun, Namho Hur, Soo In Lee

Open publisher page 3 citations

Abstract

We propose 3DAV (3D audio-video) processors in both the transmitter and the receiver, which would allow for backward compatibility with a current T-DMB (terrestrial digital multimedia broadcasting) system. Main idea is to process 3DAV data as two objects for the backward compatibility, even if there are four physical objects(audio, 3D additional audio, video, and 3D additional audio). This paper demonstrates how the experimental results for the proposed 3DAV processors ensure backward compatibility and have sufficient 3D video quality to serve 3DAV contents on the T-DMB with only 1.5 Mbps bandwidth

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What this paper is about

We propose 3DAV (3D audio-video) processors in both the transmitter and the receiver, which would allow for backward compatibility with a current T-DMB (terrestrial digital multimedia broadcasting) system. Main idea is to process 3DAV data as two objects for the backward compatibility, even if there are four physical objects(audio, 3D additional audio, video, and 3D additional audio). This paper demonstrates how the experimental results for the proposed 3DAV processors ensure backward compatibility and have sufficient 3D video quality to serve 3DAV contents on the T-DMB with only 1.5 Mbps bandwidth

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Available abstract

We propose 3DAV (3D audio-video) processors in both the transmitter and the receiver, which would allow for backward compatibility with a current T-DMB (terrestrial digital multimedia broadcasting) system. Main idea is to process 3DAV data as two objects for the backward compatibility, even if there are four physical objects(audio, 3D additional audio, video, and 3D additional audio). This paper demonstrates how the experimental results for the proposed 3DAV processors ensure backward compatibility and have sufficient 3D video quality to serve 3DAV contents on the T-DMB with only 1.5 Mbps bandwidth

Key concepts: Computer science, Digital audio broadcasting, Backward compatibility, Digital audio, Audio signal processing, Digital multimedia broadcasting, Compatibility (geochemistry), Transmitter

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