Title :
Joint smoothing and source rate selection for guaranteed service networks
Author :
Verscheure, Olivier ; Frossard, Pascal ; Boudec, Jeart-Yves Le
Author_Institution :
IBM Thomas J. Watson Res. Center, Yorktown Heights, NY, USA
Abstract :
We consider the transmission of variable bit rate (VBR) video over a network offering a guaranteed service such as ATM VBR or the guaranteed service of the IETF. The guaranteed service requires that the flow accepted by the network has to be conforming with a traffic envelope σ. In this context, the output of the video encoder is constrained by the traffic envelope defined at the network entry point, the playback delay budget and the decoding buffer size. In previous works, the constraints are satisfied either by smoothing a fixed coder output, or by modifying the encoding parameters. In this paper we take a combined approach. This shows us to find a joint source rate selection/smoothing solution which minimizes the total average distortion while satisfying constraints on the traffic envelope, playback delay and decoding buffer size. Our solution is based on a Viterbi-like algorithm. Our approach is. Made possible by the representation of the optimally smoothed output as the time inverse of a shaper output. Experimental results exhibit significant improvements in terms of total average distortion compared to the smoothing of a fixed coder output, under equivalent traffic parameters and decoding constraints
Keywords :
asynchronous transfer mode; buffer storage; decoding; delays; packet switching; rate distortion theory; smoothing methods; telecommunication traffic; video coding; visual communication; ATM VBR; IETF; VBR video transmission; Viterbi-like algorithm; decoding buffer size; decoding constraints; encoding parameters; guaranteed service networks; joint source rate selection/smoothing; playback delay; playback delay budget; rate control; rate distortion; shaper output; total average distortion minimization; traffic envelope; traffic parameters; variable bit rate; video coding; video encoder output; Bit rate; Decoding; Delay; Encoding; Protocols; Quantization; Smoothing methods; Streaming media; Telecommunication traffic; Video coding;
Conference_Titel :
INFOCOM 2001. Twentieth Annual Joint Conference of the IEEE Computer and Communications Societies. Proceedings. IEEE
Conference_Location :
Anchorage, AK
Print_ISBN :
0-7803-7016-3
DOI :
10.1109/INFCOM.2001.916249