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Efficient and Low-Complexity Surveillance Video Compression Using Backward-Channel Aware Wyner-Ziv Video Coding

机译:使用后向通道感知Wyner-Ziv视频编码的高效且低复杂度监视视频压缩

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Video surveillance has been widely used in recent years to enhance public safety and privacy protection. A video surveillance system that deals with content analysis and activity monitoring needs efficient transmission and storage of the surveillance video data. Video compression techniques can be used to achieve this goal by reducing the size of the video with no or small quality loss. State-of-the-art video compression methods such as H.264/AVC often lead to high computational complexity at the encoder, which is generally implemented in a video camera in a surveillance system. This can significantly increase the cost of a surveillance system, especially when a mass deployment of end cameras is needed. In this paper, we discuss the specific considerations for surveillance video compression. We present a surveillance video compression system with low-complexity encoder based on Wyner-Ziv coding principles to address the tradeoff between computational complexity and coding efficiency. In addition, we propose a backward-channel aware Wyner-Ziv (BCAWZ) video coding approach to improve the coding efficiency while maintaining low complexity at the encoder. The experimental results show that for surveillance video contents, BCAWZ can achieve significantly higher coding efficiency than H.264/AVC INTRA coding as well as existing Wyner-Ziv video coding methods and is close to H.264/AVC INTER coding, while maintaining similar coding complexity with INTRA coding. This shows that the low motion characteristics of many surveillance video contents and the low-complexity encoding requirement make our scheme a particularly suitable candidate for surveillance video compression. We further propose an error resilience scheme for BCAWZ to address the concern of reliable transmission in the backward-channel, which is essential to the quality of video data for real-time and reliable object detection and event analysis.
机译:近年来,视频监控已广泛用于增强公共安全和隐私保护。用于内容分析和活动监视的视频监视系统需要有效传输和存储监视视频数据。视频压缩技术可用于通过减少视频大小而没有质量损失或质量损失很小的方法来实现此目标。诸如H.264 / AVC之类的最新视频压缩方法通常会导致编码器处的计算复杂度很高,通常在监视系统中的摄像机中实现这种计算复杂性。这会大大增加监视系统的成本,尤其是在需要大量部署终端摄像机的情况下。在本文中,我们讨论了监视视频压缩的特定注意事项。我们提出了一种基于Wyner-Ziv编码原理的低复杂度编码器监视视频压缩系统,以解决计算复杂度和编码效率之间的折衷问题。此外,我们提出了一种后向感知Wyner-Ziv(BCAWZ)视频编码方法,以提高编码效率,同时保持编码器的低复杂度。实验结果表明,对于监控视频内容,BCAWZ可以实现比H.264 / AVC INTRA编码以及现有的Wyner-Ziv视频编码方法显着更高的编码效率,并且与H.264 / AVC INTER编码非常接近,同时保持相似INTRA编码的编码复杂度。这表明许多监视视频内容的低运动特性和低复杂度的编码要求使我们的方案特别适合监视视频压缩。我们进一步提出了一种针对BCAWZ的错误恢复方案,以解决后向通道中可靠传输的问题,这对于实时,可靠的目标检测和事件分析的视频数据质量至关重要。

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