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Contents-aware partitioning algorithm for parallel high efficiency video coding

机译:用于并行高效视频编码的内容感知分区算法

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We introduce a new parallelization method for high-efficiency video coding (HEVC), which resolves the shortcomings of the existing tile-based parallel processing method. The parallel HEVC performs encoding by dividing a frame into numerous parallel units. This decreases the compression efficiency compared with sequential HEVC, because it artificially breaks the data correlation within a frame, which is called the parallelization overhead. The traditional parallel techniques such as Tiles and wavefront parallel processing (WPP) inherently introduce a high parallelization overhead because they simply divide a frame statically without considering the contents of the frame. The proposed new parallel encoding scheme resolves such problems by partitioning a frame based on the meaningful contents. In order to analyze the correlations within a frame and define the contents, the features within a frame are first extracted and clustered. In the feature clustering algorithm, two factors are considered to balance the workload between parallel units: (1) the number of features in each cluster and (2) the number of coding tree units (CTU) occupied by each cluster. The frame is partitioned based on the result of clustering, and the partitions are encoded in parallel. The proposed scheme achieves a bit-saving of up to 7.21%, with an average of 3.71%, along with an average time-saving of 20.50% compared to the Tiles technique.
机译:我们介绍了一种用于高效视频编码(HEVC)的新并行化方法,该方法解决了现有基于图块的并行处理方法的缺点。并行HEVC通过将帧划分为多个并行单元来执行编码。与顺序HEVC相比,这降低了压缩效率,因为它人为地破坏了帧内的数据相关性,这称为并行化开销。诸如Tiles和波前并行处理(WPP)之类的传统并行技术固有地引入了高并行化开销,因为它们简单地静态划分帧而不考虑帧的内容。所提出的新的并行编码方案通过基于有意义的内容划分帧来解决这些问题。为了分析帧内的相关性并定义内容,首先要提取帧内的特征并将其聚类。在特征聚类算法中,考虑了两个因素来平衡并行单元之间的工作量:(1)每个聚类中的特征数量和(2)每个聚类中占据的编码树单元(CTU)数量。根据聚类的结果对帧进行分区,并对分区进行并行编码。与Tiles技术相比,所提出的方案可节省高达7.21%的位,平均节省3.71%,同时平均节省时间20.50%。

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