DocumentCode
976684
Title
End-to-end TCP-friendly streaming protocol and bit allocation for scalable video over wireless Internet
Author
Yang, Fan ; Zhang, Qian ; Zhu, Wenwu ; Zhang, Ya-Qin
Author_Institution
Dept. of Comput. Sci., Nanjing Univ., China
Volume
22
Issue
4
fYear
2004
fDate
5/1/2004 12:00:00 AM
Firstpage
777
Lastpage
790
Abstract
With the convergence of wired-line Internet and mobile wireless networks, as well as the tremendous demand on video applications in mobile wireless Internet, it is essential to an design effective video streaming protocol and resource allocation scheme for video delivery over wireless Internet. Taking both network conditions in the Internet and wireless networks into account, in this paper, we first propose an end-to-end transmission control protocol (TCP)-friendly multimedia streaming protocol for wireless Internet, namely WMSTFP, where only the last hop is wireless. WMSTFP can effectively differentiate erroneous packet losses from congestive losses and filter out the abnormal round-trip time values caused by the highly varying wireless environment. As a result, WMSTFP can achieve higher throughput in wireless Internet and can perform rate adjustment in a smooth and TCP-friendly manner. Based upon WMSTFP, we then propose a novel loss pattern differentiated bit allocation scheme, while applying unequal loss protection for scalable video streaming over wireless Internet. Specifically, a rate-distortion-based bit allocation scheme which considers both the wired and the wireless network status is proposed to minimize the expected end-to-end distortion. The global optimal solution for the bit allocation scheme is obtained by a local search algorithm taking the characteristics of the progressive fine granularity scalable video into account. Analytical and simulation results demonstrate the effectiveness of our proposed schemes.
Keywords
Internet; multimedia communication; radio networks; resource allocation; telecommunication congestion control; transport protocols; visual communication; bit allocation; congestive loss control; end-to-end TCP-friendly streaming protocol; network adaptation; packet loss; resource allocation scheme; round-trip time; scalable video streaming; search algorithm; transmission control protocol; unequal loss protection; video delivery; video streaming protocol; video-on-demand application; wireless Internet; Bit rate; Convergence; IP networks; Information filtering; Information filters; Internet; Resource management; Streaming media; Wireless application protocol; Wireless networks;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/JSAC.2004.826008
Filename
1295064
Link To Document