Title :
Scalable, error-resilient, and high-performance video communications in mobile wireless environments
Author :
Vass, Jozsef ; Zhuang, Xinhua ; Xinhua Zhuang
Author_Institution :
Eyeball Networks Inc., Vancouver, BC, Canada
fDate :
7/1/2001 12:00:00 AM
Abstract :
A novel mobile communications system is proposed, which provides not only effective but also efficient video access for mobile users when communicating over low-bandwidth error-prone wireless links. The middleware implemented by a mobile proxy server at the mobile support station is designed for the seamless integration of mobile users with video servers, so the specific details of the underlying protocols and source/channel coding techniques are hidden to both the video server and mobile client. Based on the concept of application-level framing, the application (video codec in our case) plays a significant role in network communications that most of functionalities of the system are implemented as part of the application. As such, at the application layer, adaptive source- and channel-coding techniques are developed to jointly provide the user with the highest possible video quality. For efficient source coding, our high-performance low-complexity video-coding algorithm called a 3-D significance-linked connected component analysis (3D-SLCCA) is chosen. Due to its high robustness against channel-error propagation, 3D-SLCCA is well suited for wireless environments. For error-resilient channel coding, a multilayer transmission error-control mechanism is developed. Since there is no additional requirement imposed on either the mobile client or the video server, mobile users interact with the server in exactly the same way as stationary users. Extensive computer experiments demonstrate the effectiveness of the proposed system
Keywords :
client-server systems; combined source-channel coding; data compression; land mobile radio; protocols; radio networks; reviews; video codecs; video coding; video servers; visual communication; 3D significance-linked connected component analysis; 3D-SLCCA; adaptive channel coding; adaptive source coding; application layer; application-level framing; channel-error propagation robustness; computer experiments; error-resilient channel coding; error-resilient video communications; high-performance video communications; low-bandwidth error-prone wireless links; low-complexity video-coding algorithm; middleware; mobile communications system; mobile computing; mobile proxy server; mobile support station; mobile wireless environments; multilayer transmission error-control; network communications; protocols; scalable video communications; source/channel coding; video access; video codec; video coding standards; video quality; video servers; Access protocols; Algorithm design and analysis; Channel coding; Computer errors; Middleware; Mobile communication; Network servers; Robustness; Source coding; Video codecs;
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on