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Efficient Depth Image Compression Using Accurate Depth Discontinuity Detection and Prediction

机译:高效的深度图像压缩,使用精确的深度不连续性检测和预测

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This paper presents a novel depth image compression algorithm for both 3D Television (3DTV) and Free Viewpoint Television (FVTV) services. The proposed scheme adopts the K-means clustering algorithm to segment the depth image into K segments. The resulting segmented image is losslessly compressed and transmitted to the decoder. The depth image is then compressed using a bi-modal block encoder, where the smooth blocks are predicted using direct spatial prediction. On the other hand, blocks containing depth discontinuities are approximated using a novel depth discontinuity predictor. The residual information is then compressed using a lossy compression strategy and transmitted to the receiver. Simulation results indicate that the proposed scheme outperforms the state of the art spatial video coding systems available today such as JPEG and H.264/AVC Intra. Moreover, the proposed scheme manages to outperform specialized depth image compression algorithms such as the one proposed by Zanuttigh and Cortelazzo.
机译:本文介绍了三维电视(3DTV)和免费视点电视(FVTV)服务的新型深度图像压缩算法。所提出的方案采用K-Means聚类算法将深度图像分段为k段。产生的分段图像无损压缩并传输到解码器。然后使用双模型块编码器压缩深度图像,其中使用直接空间预测预测平滑块。另一方面,使用新颖的深度不连续预测器近似包含深度不连续性的块。然后使用有损的压缩策略压缩残余信息并将其传输到接收器。仿真结果表明,所提出的方案优于如今可用的现有空间视频编码系统的状态,例如JPEG和H.264 / AVC内部。此外,所提出的方案管理以优于Zanuttigh和Cortelazzo提出的专用深度图像压缩算法。

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