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Sub-picture based rate control algorithm for achieving real time encoding and improved video quality for H.264 HD encoder on embedded video SOCs

机译:基于嵌入式视频SoC上H.264高清编码器实现实时编码和改进视频质量的子图像基于速率控制算法

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In this paper we present a rate control algorithm to control the encoded picture size in a video sequence within a specified maximum limit. The need to control the encoded picture size arises in several video applications; (i) video conferencing to ensure the glass to glass delay is within acceptable conversational delay, (ii) video encoders complying with H.241 MTU packetization constraints to ensure that for all pictures real-time encoding can be achieved. The proposed rate control algorithm adjusts the quantization scale at the end of every row in the video sequence. Bits consumed by the already encoded macroblocks are monitored and the quantization scale is increased if the bits consumed are more than the average bits per macroblock as determined by the maximum encoded picture constraint. It is shown that in a video encoder complying with H.241 MTU packetization constraints the picture encoding time does not always meet the real-time encoding constraint. However, by using the proposed rate control algorithm in the video encoder (complying with H.241 MTU packetization constraints) it is shown that the encoding time for all pictures always meets the real-time constraint. Additionally, it is also shown that using the proposed rate control enables improvement in overall video quality. For sequence #3 the PSNR was increased by 3.8 dB and the DMOS was decreased by 44 points when the proposed rate control algorithm was used compared to the previous rate control algorithm indicating significant video quality improvements1. Thus with our proposed algorithm the dual requirements of (i) real-time encoding and (ii) improved video quality, are both simultaneously achieved.
机译:在本文中,我们介绍了一个速率控制算法,以在指定的最大限制内控制视频序列中的编码图像尺寸。控制编码图像大小的需要在多个视频应用中产生; (i)视频会议以确保玻璃到玻璃延迟是可接受的会话延迟,(ii)符合H.241 MTU打包约束的视频编码器,以确保可以实现所有图像的实时编码。所提出的速率控制算法在视频序列中的每一行末尾调整量化刻度。监视已经编码的宏块消耗的比特,并且如果由最大编码图像约束确定的比率超过每个宏块的平均比特,则增加量化比例。结果表明,在符合H.241 MTU分组化约束的视频编码器中,图像编码时间并不总是满足实时编码约束。然而,通过在视频编码器中使用所提出的速率控制算法(符合H.241 MTU分组化约束),显示所有图片的编码时间总是符合实时约束。另外,还示出了使用所提出的速率控制能够改善整体视频质量。对于序列#3,PSNR增加3.8dB,当使用所提出的速率控制算法与指示显着的视频质量改进 1 的先前速率控制算法使用时,DMOS减少了44点。因此,利用我们所提出的算法(i)实时编码的双重要求和(ii)改善了视频质量,同时实现。

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