Title :
Rate-distortion optimized slicing, packetization and coding for error resilient video transmission
Author :
Masala, Enrico ; Yang, Hua ; Rose, Kenneth ; De Martin, Juan Carlos
Author_Institution :
Dipt. di Automatica e Informatica, Politecnico di Torino, Italy
Abstract :
This paper presents an algorithm to optimize the tradeoff between rate and expected end-to-end distortion of a video sequence transmitted over a packet network. The approach optimizes the source coding parameters, slicing, network QoS class selection and/or error control coding parameters, and accounts for the effects of compression, packetization, error propagation, and concealment at the decoder. It builds on, and substantially extends the applicability of, the recursive optimal per-pixel estimate (ROPE) technique for end-to-end distortion estimation. A trellis-based algorithm is introduced in order to overcome macroblock interdependencies in the estimation procedure, and allow adaptive slicing. Moreover, we propose a complementary packetization scheme to efficiently arrange the slices into packets for FEC protection while minimizing rate loss due to padding. Simulations demonstrate consistent gains over currently used techniques.
Keywords :
error correction codes; forward error correction; packet switching; quality of service; rate distortion theory; recursive estimation; source coding; trellis codes; video coding; FEC protection; QoS; complementary packetization scheme; end-to-end distortion estimation; error control coding; error resilient video transmission; packet network; rate-distortion optimized slicing; recursive optimal per-pixel estimation technique; source coding; trellis-based algorithm; video sequence; Decoding; Electronic mail; Error correction; Forward error correction; Protection; Rate-distortion; Recursive estimation; Source coding; Video compression; Video sequences;
Conference_Titel :
Data Compression Conference, 2004. Proceedings. DCC 2004
Print_ISBN :
0-7695-2082-0
DOI :
10.1109/DCC.2004.1281463