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Smooth quality streaming with bit-plane labeling

机译:具有位平面标记的流畅质量流

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Bit-plane coding techniques have been proposed as an efficient way to achieve the goal of fine granularity scalability (FGS). Both in image and video coding standards such as JPEG 2000 and MPEG-4, bit-plane coding techniques have been utilized to code a universal bit-stream for various bandwidth applications. With the bit-plane coding, a bit-stream can be truncated according to the available bandwidth. Hence, the video quality can be very sensitive to the network bandwidth variation especially while streaming a video over the Internet or a wireless link. For overall human perception, a consistent and smooth quality video is much better than to have high video quality in just a short period but with highly quality variation in general. We classify the quality variation into two categories: inter-frame and intra-frame quality variation. The inter-frame quality variation may cause by the constant bit rate coded (CBR) base layer video or the network bandwidth variation, while the intra-frame quality variation causes mainly by the various motion types. For example, moving objects are usually more difficult to be encoded. This paper focuses on the inter-frame quality variation because quality variation is more significant between frames than within a frame. An enhancement layer labeling algorithm is proposed to reduce the inter-frame quality variation, and a dynamic bit-plane truncation scheme is utilized to maintain the smooth streaming video quality. The proposed algorithm has no overhead in the decoder, and the experimental results portray that our proposed algorithm can greatly eliminate the inter-frame quality variation.
机译:已经提出了位平面编码技术作为实现精细粒度可伸缩性(FGS)目标的有效方式。在诸如JPEG 2000和MPEG-4之类的图像和视频编码标准中,位平面编码技术都已被用于对各种带宽应用的通用位流进行编码。使用位平面编码,可以根据可用带宽截断位流。因此,视频质量可能对网络带宽变化非常敏感,尤其是在通过Internet或无线链接流式传输视频时。对于整体人类感知而言,一致且流畅的视频质量要比在短时间内获得高视频质量要好得多,但是通常情况下质量变化很大。我们将质量变化分为两类:帧间质量和帧内质量变化。帧间质量变化可能由恒定比特率编码(CBR)基本层视频或网络带宽变化引起,而帧内质量变化主要由各种运动类型引起。例如,运动对象通常更难以编码。本文着重于帧间质量变化,因为帧之间的质量变化比帧内的质量变化更重要。提出了一种增强层标记算法,以减少帧间质量变化,并采用动态位平面截断方案来保持流畅的流视频质量。该算法在解码器中没有开销,实验结果表明,该算法可以大大消除帧间质量变化。

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