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Rate-Distortion-Complexity Optimization of H.264/AVC for Multiple Programs on a Multi-Core Processor

机译:多核处理器上多个程序的H.264 / AVC的速率 - 失真 - 复杂性优化

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In this paper we analyse the encoding of multiple video programs when optimizing rate, distortion, and complexity jointly. We assume that the processing platform allows allocating the processing resources dynamically between the encoders, such as e.g. possible when multiple encoder instances run on a multi-core processor. The goal is to allocate processing resources to the program which currently benefits most from it. For this purpose, the complexity-distortion trade-off is evaluated for each Group of Picture (GOP) and resources are allocated dynamically on a GOP time frame. Besides dynamic allocation of processing resources we also consider the dynamic allocation of bit rate under consideration of the rate-distortion trade-off. The analysis of the potential gain with respect to several system parameters (duration of GOP, processing resources, bit rate) is the topic of this paper. Simulation results are presented for an ensemble of 8 programs encoded with H.264/AVC at various bit rates and complexity levels. The simulation results indicate that an average gain of 3.2 dB PSNR can be achieved where most of the gain can be attributed to rate-distortion optimization rather than complexity distortion optimization.
机译:在本文中,我们在合作优化速率,失真和复杂性时分析多个视频节目的编码。我们假设处理平台允许在编码器之间动态地分配处理资源,例如例如例如。当多个编码器实例在多核处理器上运行时可能。目标是将处理资源分配给当前从中受益的程序。为此目的,对每组图片(GOP)(GOP)评估复杂性失真折衷,并且在GOP时间框架上动态分配资源。除了动态分配处理资源外,我们还考虑考虑速率失真折衷的比特率的动态分配。对多个系统参数(GOP持续时间,处理资源,比特率)的潜在增益分析是本文的主题。仿真结果显示在各种比特率和复杂性水平上编码的8节目的集合。模拟结果表明,可以实现3.2dB PSNR的平均增益,其中大多数增益可归因于速率失真优化而不是复杂性失真优化。

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