Trellis-based optimization of MPEG-4 advanced audio coding

A. Aggarwal, S. Regunathan, K. Rose
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引用次数: 21

Abstract

We outline a method to perform efficient low rate quantization for MPEG-4 advanced audio coding (AAC). The AAC bit stream consists of indices for quantized spectral coefficients as well as side information about quantizer step sizes and Huffman codebooks. The MPEG-4 Verification Model does not explicitly account for side information bits in its optimization and suffers from poor compression efficiency at low bit rates. We reformulate the encoding problem as one of optimal parameter selection, where the side information bits are taken into account, so as to minimize the noise to mask ratio for the given target bit rate. The optimal solution is determined by a dynamic programming procedure that efficiently searches through a trellis. This trellis-based optimization greatly improves the low bit rate performance of AAC and, consequently, the performance of a multi-layer AAC system. The resulting bit stream is standard-compatible, and additional complexity due to the proposed optimization is only incurred at the encoder.
基于栅格的MPEG-4高级音频编码优化
提出了一种实现MPEG-4高级音频编码(AAC)高效低速率量化的方法。AAC比特流由量化谱系数的指标以及量化器步长和霍夫曼码本的侧信息组成。MPEG-4验证模型在其优化中没有明确地考虑到侧信息位,并且在低比特率下压缩效率很差。我们将编码问题重新表述为最优参数选择问题之一,其中考虑了侧信息位,以便在给定的目标比特率下最小化噪声与掩码比。最优解由动态规划程序确定,该程序有效地搜索网格。这种基于网格的优化极大地提高了AAC的低比特率性能,从而提高了多层AAC系统的性能。产生的比特流是标准兼容的,并且由于所提出的优化而产生的额外复杂性仅在编码器上产生。
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