Title :
Video summary delivery over cooperative wireless networks
Author :
Ci, Song ; Wu, Dalei ; Ye, Yun ; Han, Zhu ; Su, Guan-Ming ; Wang, Haohong ; Tang, Hui
fDate :
4/1/2012 12:00:00 AM
Abstract :
This article addresses cooperative video summary delivery over wireless networks which inherits advantages from both cooperative communication and video summarization. In this work, a novel decode-process-and-forward (DPF) scheme is proposed for video summary transmission, where a relay node with video processing capability is involved to generate a concise version of the summary frame, called summary of summary (SoS). The SoS information is effectively consumed by the destination side to enhance its error concealment capability, leading to an improved video reconstruction quality. This article proposes a generic crosslayer optimization framework for cooperative video summary transmission, which jointly considers the source coding, relay processing parameters, power allocation, and error concealment strategy to achieve the best video quality. The problem is solved by using Lagrangian relaxation and dynamic programming. Experimental results show that the proposed scheme significantly outperforms existing cooperative and non-cooperative transmission schemes.
Keywords :
cooperative communication; decode and forward communication; dynamic programming; image reconstruction; radio networks; source coding; video signal processing; DPF scheme; Lagrangian relaxation; SoS information; cooperative wireless networks; decode-process-and-forward scheme; destination side; dynamic programming; error concealment capability enhancement; generic crosslayer optimization framework; improved video reconstruction quality; noncooperative transmission schemes; power allocation; relay node; relay processing parameters; source coding; summary frame; summary of summary; video processing capability; video quality; video summary delivery; video summary transmission; Collaborative work; Complexity theory; Receivers; Source coding; Video communication; Wireless networks;
Journal_Title :
Wireless Communications, IEEE
DOI :
10.1109/MWC.2012.6189417