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Rate-Distortion Optimized Bitstream Extractor for Motion Scalability in Wavelet-Based Scalable Video Coding

机译:针对基于小波的可伸缩视频编码中的运动可伸缩性的速率失真优化比特流提取器

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Motion scalability is designed to improve the coding efficiency of a scalable video coding framework, especially in the medium to low range of decoding bit rates and spatial resolutions. In order to fully benefit from the superiority of motion scalability, a rate-distortion optimized bitstream extractor, which determines the optimal motion quality layer for any specific decoding scenario, is required. In this paper, the determination process first starts off with a brute force searching algorithm. Although guaranteed by the optimal performance within the search domain, it suffers from high computational complexities. Two properties, i.e., the monotonically nondecreasing property and the unimodal property, are then derived to accurately describe the rate-distortion behavior of motion scalability. Based on these two properties, modified searching algorithms are proposed to reduce the complexity (up to five times faster) and to achieve the global optimality, even for those decoding scenarios outside the search domain.
机译:运动可伸缩性旨在提高可伸缩视频编码框架的编码效率,特别是在解码比特率和空间分辨率的中低范围内。为了充分受益于运动可伸缩性的优越性,需要一种速率失真优化的比特流提取器,其确定用于任何特定解码方案的最佳运动质量层。在本文中,确定过程首先从蛮力搜索算法开始。尽管通过搜索域内的最佳性能来保证,但它具有很高的计算复杂度。然后导出两个属性,即单调非递减属性和单峰属性,以准确描述运动可伸缩性的速率失真行为。基于这两个属性,提出了改进的搜索算法,以降低复杂度(快5倍)并实现全局最优,即使对于搜索域外的那些解码方案也是如此。

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