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Joint optimization of the perceptual core and lossless compression layers in scalable audio coding

机译:可伸缩音频编码中感知核心层和无损压缩层的联合优化

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MPEG-4 High-Definition Advanced Audio Coding (HD-AAC) enables scalable-to-lossless (SLS) audio coding with an Advanced Audio Coding (AAC) base layer, and fine-grained enhancements based on the MPEG SLS standard. While the AAC core offers better perceptual quality at lossy bit-rates, its inclusion has been observed to compromise the ultimate lossless compression performance as compared to the SLS ‘non-core’ (i.e., without an AAC base layer) codec. In contrast, the latter provides excellent lossless compression but with significantly degraded audio quality at low bit-rates. We propose a trellis-based approach to directly optimize the trade-off between the quality of the AAC core and the lossless compression performance of SLS. Simulations to test the effectiveness of the approach demonstrate the capability to adjust the trade-off to match application specific needs. Moreover, such optimization can in fact achieve an AAC core of superior perceptual quality while maintaining state-of-the-art (and surprisingly sometimes even better) lossless compression, all this in compliance with the HD-AAC standard.
机译:MPEG-4高清晰度高级音频编码(HD-AAC)支持具有高级音频编码(AAC)基本层的可伸缩至无损(SLS)音频编码,以及基于MPEG SLS标准的细粒度增强功能。虽然AAC核心在有损比特率下提供了更好的感知质量,但是与SLS“非核心”(即,没有AAC基本层)编解码器相比,包含AAC核心会损害最终的无损压缩性能。相反,后者提供了出色的无损压缩,但在低比特率下音频质量明显下降。我们提出了一种基于网格的方法来直接优化AAC核心质量和SLS的无损压缩性能之间的权衡。通过仿真测试该方法的有效性,可以证明可以调整折衷方案以满足特定于应用程序的需求。此外,这样的优化实际上可以实现卓越的感知质量的AAC核心,同时保持最新(且令人惊讶的是,有时甚至更好)无损压缩,所有这些都符合HD-AAC标准。

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