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Adaptive Compressive Video Coding for Embedded Camera Sensors: Compressed Domain Motion and Measurements Estimation

机译:用于嵌入式摄像机传感器的自适应压缩视频编码:压缩域运动和测量估计

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This paper presents a new framework for wireless video streaming services using the resource-constrained embedded camera sensors based on block compressive sensing. We propose adaptive encoding scheme that exploits high redundancy between successive video frames to reduce transmission cost while effectively handling occlusion effects and, at the same time, maintains the simple and energy conserving encoder design. The proposed methodology adapts the compression ratio for different blocks of the non-key frame depending on temporal correlation. We also propose compressed domain motion and measurements estimation techniques to exploit the high correlation between successive frames at the decoder. The proposed motion estimation technique makes use of restricted isometry property of the sensing matrix to seek the best matching measurement vector for motion estimation as opposed to block matching in conventional video coding. In the proposed measurement estimation technique, efficient utilization of bandwidth is achieved by skipping some measurements at the transmitter side. The skipped measurements are estimated at the receiver by exploiting the correlation between CS measurements of the non-key frame and corresponding motion predicted frame using multiple regression model. Extensive simulation results on a set of diverse video sequences are presented to demonstrate the effectiveness of the proposed video coding technique.
机译:本文介绍了使用基于块压缩感测的资源受限嵌入式摄像机传感器的无线视频流服务的新框架。我们提出了自适应编码方案,该方案利用连续视频帧之间的高冗余,以减少传输成本,同时有效处理遮挡效果,同时保持简单和节能的编码器设计。提出的方法根据时间相关,适应非关键帧的不同块的压缩比。我们还提出了压缩域运动和测量估计技术,以利用解码器在连续帧之间的高相关。所提出的运动估计技术利用感测矩阵的限制等距特性,寻求运动估计的最佳匹配测量向量,而不是传统视频编码中的块匹配。在所提出的测量估计技术中,通过在发射器侧跳过一些测量来实现带宽的有效利用。通过利用使用多元回归模型利用非关键帧和对应的运动预测帧的CS测量与相应的运动预测帧之间的相关性来估计跳过的测量。提出了一组不同视频序列的广泛模拟结果以证明所提出的视频编码技术的有效性。

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