DocumentCode :
1187
Title :
An enhanced structure of layered forward error correction and interleaving for scalable video coding in wireless video delivery
Author :
Tin-Yu Wu ; Guizani, S. ; Wei-Tsong Lee ; Po-Chang Huang
Author_Institution :
Nat. Ilan Univ., Ilan, Taiwan
Volume :
20
Issue :
4
fYear :
2013
fDate :
Aug-13
Firstpage :
146
Lastpage :
152
Abstract :
The forward error correction (FEC) mechanism adds redundancy to the original information and uses this redundancy to recover the errors in, or loss of, the original information. Compared with the automatic retransmission request (ARQ) approach, FEC reduces delay but utilizes more bandwidth resources. To enhance video transmission over wireless networks, another mechanism, enhanced adaptive FEC (EAFEC), has been recently presented. According to the throughput and wireless channel state, EAFEC dynamically determines the length of the redundancy and reduces the transmission of unnecessary redundancy to achieve the efficient utilization of wireless networking resources. To further enhance the efficiency of EAFEC, we propose an enhanced structure, adaptive and interleaving FEC (AIFEC) using the features of FEC. Our proposed AIFEC scheme not only dynamically provides different protection strengths for video information of different priority levels based on the throughput and wireless channel state, but also significantly improves the recovery rate for consecutive packet loss.
Keywords :
automatic repeat request; forward error correction; video coding; AIFEC; ARQ approach; EAFEC; adaptive and interleaving FEC mechanism; automatic retransmission request approach; enhanced adaptive FEC mechanism; layered forward error correction mechanism; scalable video coding; video information; wireless channel state; wireless networking resources; wireless video delivery; Error analysis; Forward error correction; Packet loss; Static VAr compensators; Streaming media; Video coding;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE
Publisher :
ieee
ISSN :
1536-1284
Type :
jour
DOI :
10.1109/MWC.2013.6590062
Filename :
6590062
Link To Document :
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