Extending Video Decoding Energy Models for 360° and HDR Video Formats in HEVC

Matthias Kränzler, Christian Herglotz, A. Kaup
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引用次数: 5

Abstract

Research has shown that decoder energy models are helpful tools for improving the energy efficiency in video playback applications. For example, an accurate feature-based bit stream model can reduce the energy consumption of the decoding process. However, until now only sequences of the SDR video format were investigated. Therefore, this paper shows that the decoding energy of HEVC-coded bit streams can be estimated precisely for different video formats and coding bit depths. Therefore, we compare a state-of-the-art model from the literature with a proposed model. We show that bit streams of the 360◦, HDR, and fisheye video format can be estimated with a mean estimation error lower than 3.88% if the setups have the same coding bit depth. Furthermore, it is shown that on average, the energy demand for the decoding of bit streams with a bit depth of 10-bit is 55% higher than with 8-bit.
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扩展视频解码能量模型360°和HDR视频格式在HEVC
研究表明,解码器能量模型是提高视频播放应用中能量效率的有用工具。例如,精确的基于特征的比特流模型可以减少解码过程的能量消耗。然而,到目前为止,只研究了SDR视频格式的序列。因此,本文表明,对于不同的视频格式和编码位深度,可以精确地估计hevc编码码流的解码能量。因此,我们比较了文献中最先进的模型和提出的模型。我们表明,如果设置具有相同的编码位深度,360度,HDR和鱼眼视频格式的比特流可以以低于3.88%的平均估计误差估计。此外,研究表明,平均而言,比特深度为10比特的比特流解码的能量需求比8比特的解码高55%。
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