Title :
A systemic resource allocation for multi-user video transmission over wireless network
Author :
Gnanavel, S. ; Ramakrishan, S. ; Kumar, N.M.
Author_Institution :
Anna Univ. of Technol., Chennai, India
Abstract :
We propose an application-driven Multiuser resource allocation and packet scheduling concept for wireless video streaming. The downlink transmission of multiple video sequences to multiple users over a shared resource-limited wireless channel however is a tough task. Among the many challenges in this area are the limited available resources, like bandwidth and power, time-varying channel conditions and the different transmission requirements of different video content. This work takes into account the time-varying nature of the wireless channels, as well as the importance of individual video packets, to develop a cross-layer resource allocation and packet scheduling scheme for multiuser video streaming over wireless networks. That accurate channel feedback is not available at the scheduler, the objective of the optimization is to minimize the expected distortion of the received sequence, where the expectation is calculated at the scheduler with respect to the packet loss probability in the channel. The proposed scheme is formulated as a joint optimization over the resource allocation and channel loss protection, in order to minimize the distortion of the received video sequences. Our simulation result show that the proposed scheme performs significantly better than a conventional content independent scheme of video transmission.
Keywords :
image sequences; optimisation; probability; resource allocation; video streaming; wireless channels; application-driven multiuser resource allocation; channel loss protection; cross-layer resource allocation; joint optimization; multiple video sequences; multiuser video transmission; packet loss probability; packet scheduling; shared resource-limited wireless channel; systemic resource allocation; time-varying channel conditions; wireless network; wireless video streaming; Channel estimation; Decoding; Multiaccess communication; Resource management; Streaming media; Wireless networks; Cross-layer design; H.264/AVC; HSDPA; error concealment; packet scheduling; video streaming; wireless packet scheduling;
Conference_Titel :
Radar, Communication and Computing (ICRCC), 2012 International Conference on
Conference_Location :
Tiruvannamalai
Print_ISBN :
978-1-4673-2756-5
DOI :
10.1109/ICRCC.2012.6450596