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Adaptive Karhunen-Loeve Transform for Enhanced Multichannel Audio Coding

机译:用于增强型多声道音频编码的自适应Karhunen-Loeve变换

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摘要

A modified MPEG Advanced Audio Coding (AAC) scheme based on the Karhunen-Loeve transform (KLT) to remove inter-channel redundancy, which is called the MAACKL method, has been proposed in our previous work. However, a straightforward coding of elements of the KLT matrix generates about 240 bits per matrix for typical 5 channel audio contents. Such an overhead is too expensive so that it prevents MAACKL from updating KLT dynamically in a short period of time. In this research, we study the de-correlation efficiency of adaptive KLT as well as an efficient way to encode elements of the KLT matrix via vector quantization. The effect due to different quantization accuracy and adaptation period is examined carefully. It is demonstrated that with the smallest possible number of bits per matrix and a moderately long KLT adaptation time, the MAACKL algorithm can still generate a very good coding performance.
机译:在我们以前的工作中已经提出了一种基于Karhunen-Loeve变换(KLT)的改进的MPEG高级音频编码(AAC)方案,以消除通道间冗余,该方案称为MAACKL方法。但是,对于典型的5声道音频内容,KLT矩阵元素的直接编码会为每个矩阵生成约240位。这样的开销太昂贵了,以至于它阻止了MAACKL在短时间内动态更新KLT。在这项研究中,我们研究了自适应KLT的去相关效率,以及通过矢量量化对KLT矩阵的元素进行编码的有效方法。仔细检查由于量化精度和自适应周期不同而产生的影响。事实证明,在每个矩阵可能的位数最少且KLT适应时间适中的情况下,MAACKL算法仍可以产生非常好的编码性能。

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