DocumentCode :
357081
Title :
A novel video communication system utilizing adaptive and integrated system design for mobile wireless ATM
Author :
Vass, Jozsef ; Zhuang, Xinhua
Author_Institution :
Eyeball.com Network Inc., West Vancouver, BC, Canada
Volume :
2
fYear :
2000
fDate :
2000
Firstpage :
955
Abstract :
An adaptive and integrated video communication system is proposed for wireless ATM. Video received from the wireline source is adapted at the base station to both the hardware capabilities of mobile host and time-varying wireless channel conditions. Following the application level framing principle, source coding, channel coding, and packetization are jointly implemented as part of the application and only simple services are requested from the underlying wireless network infrastructure. Highly efficient and robust source coding, channel coding, and packetization techniques are also proposed. For source coding, we propose to use our three-dimensional significance-linked connected component analysis video codec. For channel coding and packetization, both intracell and interlaced (intercell) forward error correction are applied. Furthermore, the time-varying channel characteristics is exploited by adaptively allocating the total bit budget between source coding and channel coding. Performance evaluation demonstrates the effectiveness of the proposed wireless video communication system
Keywords :
adaptive systems; asynchronous transfer mode; channel coding; forward error correction; land mobile radio; packet radio networks; source coding; time-varying channels; video codecs; video coding; visual communication; 3D significance-linked connected component analysis; adaptive bit budget allocation; adaptive system design; base station; channel coding; integrated system design; intercell forward error correction; interlaced forward error correction; intracell forward error correction; level framing; mobile host; mobile wireless ATM; packetization techniques; performance evaluation; source coding; time-varying wireless channel; video codec; wireless network infrastructure; wireless video communication system; wireline source; Adaptive systems; Base stations; Channel coding; Forward error correction; Hardware; Robustness; Source coding; Time-varying channels; Video codecs; Wireless networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Multimedia and Expo, 2000. ICME 2000. 2000 IEEE International Conference on
Conference_Location :
New York, NY
Print_ISBN :
0-7803-6536-4
Type :
conf
DOI :
10.1109/ICME.2000.871517
Filename :
871517
Link To Document :
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