DocumentCode
767335
Title
Low bit-rate video transmission over fading channels for wireless microcellular systems
Author
Khansari, Masoud ; Jalali, Ahmad ; Dubois, Eric ; Mermelstein, Paul
Author_Institution
INRS Telecommun., Verdun, Que., Canada
Volume
6
Issue
1
fYear
1996
fDate
2/1/1996 12:00:00 AM
Firstpage
1
Lastpage
11
Abstract
We consider the transmission of QCIF resolution (176×144 pixels) video signals over wireless channels at transmission rates of 64 kb/s and below. The bursty nature of the errors on the wireless channel requires careful control of transmission performance without unduly increasing the overhead for error protection. A dual-rate source coder is presented that adaptively selects a coding rate according to the current channel conditions. An automatic repeat request (ARQ) error control technique is employed to retransmit erroneous data-frames. The source coding rate is selected based on the occupancy level of the ARQ transmission buffer. Error detection followed by retransmission results in less overhead than forward error correction for the same quality. Simulation results are provided for the statistics of the frame-error bursts of the proposed system over code division multiple access (CDMA) channels with average bit error rates of 10-3 to 10-4
Keywords
adaptive codes; automatic repeat request; cellular radio; code division multiple access; error detection codes; fading; personal communication networks; source coding; telecommunication channels; video coding; 144 pixel; 176 pixel; 25344 pixel; 64 kbit/s; ARQ error control technique; ARQ transmission buffer; CDMA channels; QCIF resolution; adaptive coding rate; automatic repeat request; bit error rates; dual-rate source coder; error detection; error protection; fading channels; frame-error bursts; low bit-rate video transmission; simulation; statistics; transmission performance; wireless channels; wireless microcellular systems; Automatic control; Automatic repeat request; Error analysis; Error correction; Fading; Forward error correction; Multiaccess communication; Protection; Signal resolution; Source coding;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/76.486415
Filename
486415
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