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Reduced decoder complexity and latency in pixel-domain Wyner-Ziv video coders

机译:降低像素域Wyner-Ziv视频编码器中的解码器复杂度和延迟

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摘要

In some video coding applications, it is desirable to reduce the complexity of the video encoder at the expense of a more complex decoder. Wyner-Ziv (WZ) video coding is a new paradigm that aims to achieve this. To allocate a proper number of bits to each frame, most WZ video coding algorithms use a feedback channel, which allows the decoder to request additional bits when needed. However, due to these multiple bit requests, the complexity and the latency of WZ video decoders increase massively. To overcome these problems, in this paper we propose a rate allocation (RA) algorithm for pixel-domain WZ video coders. This algorithm estimates at the encoder the number of bits needed for the decoding of every frame while still keeping the encoder complexity low. Experimental results show that, by using our RA algorithm, the number of bit requests over the feedback channel-and hence, the decoder complexity and the latency-are significantly reduced. Meanwhile, a very near-to-optimal rate-distortion performance is maintained.
机译:在一些视频编码应用中,期望以更复杂的解码器为代价来降低视频编码器的复杂性。 Wyner-Ziv(WZ)视频编码是旨在实现这一目标的新范例。为了给每个帧分配适当数量的位,大多数WZ视频编码算法使用反馈通道,该通道允许解码器在需要时请求其他位。然而,由于这些多比特请求,WZ视频解码器的复杂度和等待时间大量增加。为了克服这些问题,本文提出了一种针对像素域WZ视频编码器的速率分配(RA)算法。该算法在编码器处估计每个帧的解码所需的位数,同时仍保持较低的编码器复杂性。实验结果表明,通过使用我们的RA算法,反馈通道上的位请求数(因此,解码器复杂度和等待时间)显着降低。同时,保持了非常接近最佳的速率失真性能。

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