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A generalized hypothetical reference decoder for H.264/AVC

机译:用于H.264 / AVC的通用假设参考解码器

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摘要

In video coding standards, a compliant bit stream must be decoded by a hypothetical decoder that is conceptually connected to the output of an encoder and consists of a decoder buffer, a decoder, and a display unit. This virtual decoder is known as the hypothetical reference decoder (HRD) in H.263 and the video buffering verifier in MPEG. The encoder must create a bit stream so that the hypothetical decoder buffer does not overflow or underflow. These previous decoder models assume that a given bit stream will be transmitted through a channel of a known bit rate and will be decoded (after a given buffering delay) by a device of some given buffer size. Therefore, these models are quite rigid and do not address the requirements of many of today's important video applications such as broadcasting video live or streaming pre-encoded video on demand over network paths with various peak bit rates to devices with various buffer sizes. In this paper, we present a new HRD for H.264/AVC that is more general and flexible than those defined in prior standards and provides significant additional benefits.
机译:在视频编码标准中,必须由假设的解码器解码兼容的比特流,该假设的解码器在概念上连接到编码器的输出,并由解码器缓冲区,解码器和显示单元组成。该虚拟解码器在H.263中被称为假设参考解码器(HRD),在MPEG中被称为视频缓冲验证器。编码器必须创建一个比特流,以使假设的解码器缓冲区不会上溢或下溢。这些先前的解码器模型假定给定的比特流将通过已知比特率的信道传输,并且将被某个给定的缓冲器大小的设备解码(在给定的缓冲延迟之后)。因此,这些模型非常僵化,无法满足当今许多重要视频应用的要求,例如在具有各种峰值比特率的网络路径上按需向具有各种缓冲区大小的设备广播实时视频或流式传输预编码视频。在本文中,我们提出了一种用于H.264 / AVC的新HRD,它比以前的标准中定义的HRD更通用,更灵活,并提供了许多其他好处。

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