H.264/SVC编码无线视频传输的最优功率分配竞价

G. Sekhar, A. Jagannatham
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引用次数: 3

摘要

在本文中,我们提出了无线组播通信场景中传输视频流质量最大化的最佳功率分配方案。为此,我们采用参数可扩展视频模型,该模型将可扩展流的速率和质量建模为量化参数和帧速率的函数。这些是从H.264 SVC/AVC的标准JSVM参考编解码器派生出来的,因此很容易适用于实际场景。随后,利用这些模型提出了一种新的基于OFDMA(正交频分多址)的无线宽带4G系统收益最大化方案,该方案采用基于传输视频蒸汽质量的拍卖竞价模型。将最优功率分配框架表述为一个视频总效用最大化的约束凸优化问题。我们观察到,随着广播/多播场景中对视频流的需求增加,分配给相应视频流的功率更高,从而导致总体收入/效用的增加。仿真结果表明,在可扩展视频传输中,所提出的最优功率分配方案比次优等功率分配方案的性能有显著提高。
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Optimal power allocation auction for H.264/SVC coded wireless video transmission
In this paper, we propose optimal power allocation schemes for quality maximization of the transmitted video streams in wireless multicast communication scenarios. For this purpose we employ parametric scalable video models, which model the rate and quality of the scalable streams as a function of the quantization parameter and frame rate. These are derived from the standard JSVM reference codec for the H.264 SVC/AVC and are hence readily applicable in practical scenarios. These models are subsequently employed to present a novel revenue maximization scheme in Orthogonal Frequency Division for Multiple Access (OFDMA) based wireless broadband 4G systems employing transmitted video steam quality based auction bidding models. The framework for optimal power allocation is formulated as a constrained convex optimization problem towards sum video utility maximization. We observe that as the demand for a video stream increases in broadcast/ multicast scenarios, higher power is allocated to the corresponding video stream leading to a gain in the overall revenue/ utility. Simulations illustrate that the proposed optimal power allocation schemes result in a significant performance improvement over the suboptimal equal power allocation schemes for scalable video transmission.
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