Title :
A robust codec for transmission of very low bit-rate video over channels with bursty errors
Author :
Lee, Wee Sun ; Pickering, Mark R. ; Frater, Michael R. ; Arnold, John F.
Author_Institution :
Sch. of Electr. Eng., Australian Defence Force Acad., Canberra, ACT, USA
fDate :
12/1/2000 12:00:00 AM
Abstract :
We describe a robust codec for the transmission of very low bit-rate video over channels with a variety of errors, including random and bursty bit errors and packet loss. The codec exploits adaptivity to give good performance with a low overhead. By only protecting macroblocks which would otherwise be poorly concealed by the decoder the codec allows adaptive selection of the parts of video to protect. For protection, it uses multiple description codes which indirectly provide frequency-based adaptivity by protecting the more significant DCT coefficients. Simulations show significant improvements in the performance of the codec when compared to codecs which use intra macroblock updating (raster scan and random) at the same overhead. The codec is efficient in its use of bits and has good error resilience properties both objectively and subjectively over a wide range of conditions. Further, transcoding of the received bit stream to the standard H.263 syntax is relatively easy
Keywords :
adaptive codes; discrete cosine transforms; image sequences; random processes; telecommunication channels; transform coding; video codecs; visual communication; DCT coefficients; adaptive video selection; bursty bit errors; bursty errors; channel errors; codec performance; decoder; error resilience properties; frequency-based adaptivity; intra macroblock updating; low overhead; macroblocks; multiple description codes; packet loss; random bit errors; random updating; raster scan; received bit stream; robust codec; simulations; standard H.263 syntax; transcoding; very low bit-rate video transmission; Australia; Codecs; Decoding; Discrete cosine transforms; Image coding; Protection; Resilience; Robustness; Streaming media; Video compression;
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on