Self-Synchronized Syntax for Error-Resilient Video Coding (Special Issue on Very Low Bit-Rate Video Coding)
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概要
- 論文の詳細を見る
Moving-picture transmission through narrow band and high bit error rate communication channels, such as a mobile communication channel, requires improved compression rate and enhanced error resilience. Variable-length codes are one of the essential techniques of compressing digital video information. This technique is used in various video coding schemes although a bit error in the channel impairs the synchronization of variable-length codewords, resulting in propagation of the error. With a hybrid video coding method in particular, which combines motion-compensation and transform coding, once an error is detected in the coded data, subsequent data cannot be decoded. Consequently, even an error-free portion of any data received must be discarded. To minimize the influence of an error in a channel on coded video data, this paper proposes a new video coding syntax which makes the best use of the self- synchronizing characteristic of variable-length Huffman codes.Owing to the Huffman code's characteristic, the proposed coding syntax enables a decoder to decode the data portion that cannot be decoded, due to an error, by the conventional Syntax without adding any redundancy. Computer simulation has verified the effectivenes of this proposed syntax in video coding with a very low bitrate and erroneous communication channel.
- 社団法人電子情報通信学会の論文
- 1996-10-25
著者
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Nakai Toshihisa
Kansai Laboratories, OKI Electric Industry Company Ltd.,
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Nakai Toshihisa
Kansai Laboratory R & D Group Oki Electric Industry Co. Ltd.
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MATSUMURA Yasuko
Kansai Laboratory, R & D Group,Oki Electric Industry Co., Ltd.
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Matsumura Yasuko
Kansai Laboratory R & D Group Oki Electric Industry Co. Ltd.
関連論文
- Rejection of Narrow-Band Interference in a Delay-Lock Loop Using Prediction Error Filters (Special Issue on Spread Spectrum Techniques and Applications)
- Self-Synchronized Syntax for Error-Resilient Video Coding (Special Issue on Very Low Bit-Rate Video Coding)