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Optimizing channel allocation in a unified video-on-demand system

机译:在统一的视频点播系统中优化频道分配

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Unified video-on-demand (UVoD) is an architecture that integrates multicast transmission with unicast transmission to improve system efficiency. Streaming channels in a UVoD system are divided into unicast and multicast channels, with the multicast channels further divided equally among all videos. This uniform channel-allocation scheme is simple to design and implement, but the performance may not be optimal due to differences in video popularity. This paper investigates this channel-allocation problem with the goal of optimizing system efficiency. First, the uniform allocation assumption is removed and the channel-allocation problem formulated as a nonlinear integer optimization problem. This optimization model results in nonuniform channel allocations that can save up to 10% of channels. Second, to reduce the computational complexity in solving the nonlinear optimization model, an approximate model is derived and solved under small-latency conditions to obtain a closed-form solution. Third, a much simpler class-based popularity model is proposed and shown to achieve good efficiency, even if the precise popularity of each video is not known. Lastly, a zero-multicast channel-optimization algorithm is introduced that can further reduce channel requirement for systems with a large number of video selections. Numerical results show that optimized nonuniform channel-allocation policies can achieve channel reduction over uniform channel allocation by as much as 50% for a 1000-video system.
机译:统一视频点播(UVoD)是一种将多播传输与单播传输集成在一起的体系结构,以提高系统效率。 UVoD系统中的流媒体通道分为单播和多播通道,并且多播通道在所有视频中均分。这种统一的信道分配方案易于设计和实现,但是由于视频受欢迎程度的差异,性能可能不是最佳的。本文研究此信道分配问题,以优化系统效率为目标。首先,消除了统一分配假设,并将信道分配问题公式化为非线性整数优化问题。此优化模型导致通道分配不均匀,最多可节省10%的通道。其次,为了降低求解非线性优化模型的计算复杂度,在小延迟条件下导出并求解近似模型,以获得封闭形式的解决方案。第三,提出了一种更为简单的基于类别的流行度模型,并显示该模型可以实现良好的效率,即使每个视频的确切流行度未知。最后,引入了一种零组播信道优化算法,该算法可以进一步减少具有大量视频选择的系统的信道需求。数值结果表明,对于1000个视频系统,优化的非均匀信道分配策略可以在均匀信道分配上实现多达50%的信道减少。

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